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pan-sfk inhibitor pp2  (Millipore)


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    Structured Review

    Millipore pan-sfk inhibitor pp2
    SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in <xref ref-type= Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments. " width="250" height="auto" />
    Pan Sfk Inhibitor Pp2, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/pan-sfk+inhibitor+pp2/pan+sfk+inhibitor+pp2/pmc10482094-250-1-4
    Average 90 stars, based on 1 article reviews
    pan-sfk inhibitor pp2 - by Bioz Stars, 2026-10
    90/100 stars

    Images

    1) Product Images from "Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity"

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity

    Journal: Frontiers in Immunology

    doi: 10.3389/fimmu.2023.1224520

    SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in <xref ref-type= Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments. " title="... min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting ..." property="contentUrl" width="100%" height="100%"/>
    Figure Legend Snippet: SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments.

    Techniques Used: Over Expression, Ligation, Protein-Protein interactions, Expressing, Staining, Standard Deviation, Phospho-proteomics, Immunoprecipitation, Western Blot, Negative Control, Activity Assay

    Role of SFKs in the regulation of ER homeostasis. (A) SFK overexpression suffices to induce ER expansion in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and the -Dox counterparts were stained with ER tracker Blue-White DPX at the indicated time points after Dox addition to the cell cultures and analyzed by FACS. ER expansion measured by increases of ER tracker dye fluorescence (lower panel histograms) is correlated to increases in SFK protein levels (GFP fluorescence, upper panel histograms). 18h incubation with 30μM of the pan SFK inhibitor PP2 reduced ER expansion to baseline (-Dox) levels. The correspondent reduction of pY416 after PP2 incubation for each SFK is shown in the bottom-panel histograms. Treatment with 50 µM of the ER-stress inducer Chloroquine (CQ) for 12h was used a positive control for the expected function of the ER-tracker reagent. Graph shows the ratio of ER tracker dye MFI from Lck- or Lyn-expressing cells to -Dox treated cells. Since essentially there was no difference between the Lck and Lyn samples, statistics were calculated for the mean values between each time point (n=4, Unpaired Student t test; mean +/- SD; **P < 0.01, ***P < 0.001; ns, not significant). (B) SFK-driven ER expansion is not concurrent with upregulation of UPR mediators. RT-qPCR of the indicated UPR modulators. Each time point corresponds to samples stained with ER tracker shown in (A) RT-qPCR data are shown log 2 FC of the gene expression between Lck-BJAB (black)/-Dox and Lyn-BJAB (grey)/-Dox (n=2, Multiple unpaired Student t test; mean +/- SD; *P < 0.05, **P < 0.01, ***P < 0.001; ns: not significant). (C) SFK overexpression suffices to induce FAM134B oligomerization in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and their -Dox counterparts were mixed at a ratio of 1:1, immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Sample sets include: i) untreated cells (left-hand side panels) ii) SFK-expressing cells treated with 30μM PP2 for 18h, mixed with untreated -Dox cells (right-hand side panels) to provide a comparative visualization of SFK activity influence on the cargo receptor clustering and iii) -Dox cells treated with 50 µM CQ for 12h (indicative image shown in lower panels of D, below). FAM134B oligomers within single cells, appearing as distinctive puncta, were quantified for each sample. Collective quantitation results from three independent experiments (for the untreated samples) and two independent experiments (for PP2 and CQ treatments) are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=239, -Dox/CQ n=79, Lck-BJAB/untreated n=164, Lck-BJAB/PP2 n=98, Lyn-BJAB/untreated n=144, Lyn-BJAB/PP2 n=84. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001). (D) SFK-driven FAM134B oligomerization does not coincide with LC3 colocalization. Lck- or Lyn-expressing cells and their -Dox counterparts mixed at a ratio of 1:1 (upper panels), or -Dox cells treated with 50 µM CQ for 12h (lower panels) were immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white) and LC3B (red), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Colocalization of FAM134B and LC3 was quantified by the coloc2 pre-installed plugin of Image (J) Collective colocalization analysis results from two independent experiments are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=116, -Dox/CQ n=116, Lck-BJAB/untreated n=76, Lyn-BJAB/untreated n=73. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001).
    Figure Legend Snippet: Role of SFKs in the regulation of ER homeostasis. (A) SFK overexpression suffices to induce ER expansion in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and the -Dox counterparts were stained with ER tracker Blue-White DPX at the indicated time points after Dox addition to the cell cultures and analyzed by FACS. ER expansion measured by increases of ER tracker dye fluorescence (lower panel histograms) is correlated to increases in SFK protein levels (GFP fluorescence, upper panel histograms). 18h incubation with 30μM of the pan SFK inhibitor PP2 reduced ER expansion to baseline (-Dox) levels. The correspondent reduction of pY416 after PP2 incubation for each SFK is shown in the bottom-panel histograms. Treatment with 50 µM of the ER-stress inducer Chloroquine (CQ) for 12h was used a positive control for the expected function of the ER-tracker reagent. Graph shows the ratio of ER tracker dye MFI from Lck- or Lyn-expressing cells to -Dox treated cells. Since essentially there was no difference between the Lck and Lyn samples, statistics were calculated for the mean values between each time point (n=4, Unpaired Student t test; mean +/- SD; **P < 0.01, ***P < 0.001; ns, not significant). (B) SFK-driven ER expansion is not concurrent with upregulation of UPR mediators. RT-qPCR of the indicated UPR modulators. Each time point corresponds to samples stained with ER tracker shown in (A) RT-qPCR data are shown log 2 FC of the gene expression between Lck-BJAB (black)/-Dox and Lyn-BJAB (grey)/-Dox (n=2, Multiple unpaired Student t test; mean +/- SD; *P < 0.05, **P < 0.01, ***P < 0.001; ns: not significant). (C) SFK overexpression suffices to induce FAM134B oligomerization in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and their -Dox counterparts were mixed at a ratio of 1:1, immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Sample sets include: i) untreated cells (left-hand side panels) ii) SFK-expressing cells treated with 30μM PP2 for 18h, mixed with untreated -Dox cells (right-hand side panels) to provide a comparative visualization of SFK activity influence on the cargo receptor clustering and iii) -Dox cells treated with 50 µM CQ for 12h (indicative image shown in lower panels of D, below). FAM134B oligomers within single cells, appearing as distinctive puncta, were quantified for each sample. Collective quantitation results from three independent experiments (for the untreated samples) and two independent experiments (for PP2 and CQ treatments) are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=239, -Dox/CQ n=79, Lck-BJAB/untreated n=164, Lck-BJAB/PP2 n=98, Lyn-BJAB/untreated n=144, Lyn-BJAB/PP2 n=84. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001). (D) SFK-driven FAM134B oligomerization does not coincide with LC3 colocalization. Lck- or Lyn-expressing cells and their -Dox counterparts mixed at a ratio of 1:1 (upper panels), or -Dox cells treated with 50 µM CQ for 12h (lower panels) were immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white) and LC3B (red), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Colocalization of FAM134B and LC3 was quantified by the coloc2 pre-installed plugin of Image (J) Collective colocalization analysis results from two independent experiments are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=116, -Dox/CQ n=116, Lck-BJAB/untreated n=76, Lyn-BJAB/untreated n=73. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001).

    Techniques Used: Over Expression, Activity Assay, Expressing, Staining, Fluorescence, Incubation, Positive Control, Quantitative RT-PCR, Gene Expression, Microscopy, Confocal Microscopy, Quantitation Assay, Standard Deviation

    Related Articles

    Staining:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Inhibition:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Over Expression:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Ligation:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Protein-Protein interactions:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Expressing:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Standard Deviation:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Phospho-proteomics:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Immunoprecipitation:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Western Blot:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Negative Control:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Activity Assay:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Fluorescence:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Incubation:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Positive Control:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Quantitative RT-PCR:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Gene Expression:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Microscopy:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Confocal Microscopy:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Quantitation Assay:

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity
    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).



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    90
    Millipore pan-sfk inhibitor pp2 ( 23 ) at 20 μm
    SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in <xref ref-type= Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments. " width="250" height="auto" />
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    ( A ) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP following stimulation with 20μM SRC specific inhibitor KB SRC 4 or 10μM pan-SFK inhibitor PP2 for 6h. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to DMSO vehicle control. Mean ± S.D. plotted; N = 3 (Thy-1 KO -5kPa and WT-1GPa) or N = 4 (WT-5kPa and Thy-1 KO -1GPa) independent experiments; WT-5kPa and WT-1GPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. ( B ) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP substrates coated with αV-promoting (Fn 4G ) or α5-promoting (Fn 9*10 ) peptide fragments of the 9–10FnIII integrin binding site. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to full length human Fn (Fn Full ) control. Mean ± S.D. plotted; N = 3 (WT-5kPa, WT-1GPa, and Thy-1 KO -5kPa) or N = 4 (Thy-1 KO -1GPa) independent experiments; WT-5kPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa = Brown-Forsythe and Welch ANOVA with post-hoc unpaired t-tests with Welch’s correction, WT-1GPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. For all statistical tests: ns = p > 0.05; p < 0.05 (*); p < 0.01 (**); p < .001 (***); p < .0001 (****).

    Journal: PLOS Genetics

    Article Title: Fibroblast mechanoperception instructs pulmonary developmental and pattern specification gene expression programs

    doi: 10.1371/journal.pgen.1011924

    Figure Lengend Snippet: ( A ) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP following stimulation with 20μM SRC specific inhibitor KB SRC 4 or 10μM pan-SFK inhibitor PP2 for 6h. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to DMSO vehicle control. Mean ± S.D. plotted; N = 3 (Thy-1 KO -5kPa and WT-1GPa) or N = 4 (WT-5kPa and Thy-1 KO -1GPa) independent experiments; WT-5kPa and WT-1GPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. ( B ) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP substrates coated with αV-promoting (Fn 4G ) or α5-promoting (Fn 9*10 ) peptide fragments of the 9–10FnIII integrin binding site. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to full length human Fn (Fn Full ) control. Mean ± S.D. plotted; N = 3 (WT-5kPa, WT-1GPa, and Thy-1 KO -5kPa) or N = 4 (Thy-1 KO -1GPa) independent experiments; WT-5kPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa = Brown-Forsythe and Welch ANOVA with post-hoc unpaired t-tests with Welch’s correction, WT-1GPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. For all statistical tests: ns = p > 0.05; p < 0.05 (*); p < 0.01 (**); p < .001 (***); p < .0001 (****).

    Article Snippet: After allowing for adhesion, cells were stimulated with 1% FBS DMEM containing 20μM SRC inhibitor KB SRC 4 (Tocris) or 10μM pan-Src Family Kinase (SFK) inhibitor PP2 (Tocris) for periods of 3h or 6h.

    Techniques: Western Blot, Cell Culture, Control, Binding Assay

    (A) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP following stimulation with 20μM SRC specific inhibitor KB SRC 4 or 10μM pan-SFK inhibitor PP2 for 6hr. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to DMSO vehicle control. Mean ± S.D. plotted; N=3 (Thy-1 KO -5kPa and WT-1GPa) or N=4 (WT-5kPa and Thy-1 KO -1GPa) independent experiments; WT-5kPa and WT-1GPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. (B) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP substrates coated with αV-promoting (Fn 4G ) or α5-promoting (Fn 9*10 ) peptide fragments of the 9-10FnIII integrin binding site. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to full length human Fn (Fn Full ) control. Mean ± S.D. plotted; N=3 (WT-5kPa, WT-1GPa, and Thy-1 KO -5kPa) or N=4 (Thy-1 KO -1GPa) independent experiments; WT-5kPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa = Brown-Forsythe and Welch ANOVA with post-hoc unpaired t-tests with Welch’s correction, WT-1GPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. For all statistical tests: ns = p > 0.05; p < 0.05 (*); p < 0.01 (**); p < .001 (***); p < .0001 (****).

    Journal: bioRxiv

    Article Title: Fibroblast mechanoperception instructs pulmonary developmental and pattern specification gene expression programs

    doi: 10.1101/2024.12.26.630418

    Figure Lengend Snippet: (A) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP following stimulation with 20μM SRC specific inhibitor KB SRC 4 or 10μM pan-SFK inhibitor PP2 for 6hr. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to DMSO vehicle control. Mean ± S.D. plotted; N=3 (Thy-1 KO -5kPa and WT-1GPa) or N=4 (WT-5kPa and Thy-1 KO -1GPa) independent experiments; WT-5kPa and WT-1GPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. (B) Western blots for HOXA5 in WT and Thy-1 KO iHLFs cultured on 5kPa PDMS hydrogel or TCP substrates coated with αV-promoting (Fn 4G ) or α5-promoting (Fn 9*10 ) peptide fragments of the 9-10FnIII integrin binding site. Quantification of HOXA5 normalized to loading control was plotted as a ratio of normalized signal relative to full length human Fn (Fn Full ) control. Mean ± S.D. plotted; N=3 (WT-5kPa, WT-1GPa, and Thy-1 KO -5kPa) or N=4 (Thy-1 KO -1GPa) independent experiments; WT-5kPa = 1-way ANOVA with post-hoc uncorrected Fisher’s LSD test, Thy-1 KO -5kPa = Brown-Forsythe and Welch ANOVA with post-hoc unpaired t-tests with Welch’s correction, WT-1GPa and Thy-1 KO -1GPa = non-parametric Kruskal-Wallis test with post-hoc uncorrected Dunn’s test. Tests chosen based on data distribution and variance. For all statistical tests: ns = p > 0.05; p < 0.05 (*); p < 0.01 (**); p < .001 (***); p < .0001 (****).

    Article Snippet: After allowing for adhesion, cells were stimulated with 1% FBS DMEM containing 20μM SRC inhibitor KB SRC 4 (Tocris) or 10μM pan-Src Family Kinase (SFK) inhibitor PP2 (Tocris) for periods of 3hr or 6hr, respectively.

    Techniques: Western Blot, Cell Culture, Control, Binding Assay

    SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in <xref ref-type= Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments. " width="100%" height="100%">

    Journal: Frontiers in Immunology

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity

    doi: 10.3389/fimmu.2023.1224520

    Figure Lengend Snippet: SFK overexpression suffices to drive ligation-independent positive and negative signaling pathways. (A) Lck-expressing cells have more robust signaling responses on a whole cell population basis. Resting Lck- or Lyn-expressing cells were stained for pCD79a, pSyk (Y525/526) and pAKT (Ser473) and analyzed by FACS. Graphs display the frequency of cells double-positive for GFP and pCD79a, pSyk and pAKT respectively (Gating as in Figure 1A , % of cells in the upper right quadrants) (n≥4, Unpaired Student t test; mean +/- standard deviation [SD]; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001; ns, not significant). (B) Lyn is more efficient than Lck in igniting phosphporylation of BCR signaling mediators on an equal protein expression level. Same as in (A) but for equivalent levels of SFK expression ( Figure S3E for description of equal GFP gating strategy). (C) Enhanced CD22 tyrosine phosphorylation in response to SFK overexpression. CD22 was immunoprecipitated from the Lck- and Lyn-BJAB cell lines and their -Dox counterparts in the absence or presence of stimulation with 10 µg/mL a-IgM for 10min. IPs were analyzed by western blotting with a-pY 4G10 (upper panel) and a-CD22 (lower panel) antibodies. HEK293T cells (devoid of CD22 expression) were used as a negative control for the IPs. (D) SFK overexpression ignites the CD22/SHP-1 inhibitory pathway and this depends on their intact kinase activity. Left-hand panels. CD22 IPs as in C, but with additional samples treated for 10 min with 100 µM of the pan-SFK inhibitor PP2, as indicated. IPs were analyzed by western blotting with a-pSHP-1 Y564 (upper panel), total a-SHP-1 (middle panel) and a-CD22 (lower panel) antibodies. Right-hand panels. Total cell lysates from the same experiment, analyzed by western blotting with a-pSHP-1 Y564 (upper panel) and a-pY416 (middle panel) to verify the PP2-induced reduction in SFK activity. Actin blot (lower panel) attests equal sample loading. Shown are representative blots of two independent experiments.

    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Techniques: Over Expression, Ligation, Protein-Protein interactions, Expressing, Staining, Standard Deviation, Phospho-proteomics, Immunoprecipitation, Western Blot, Negative Control, Activity Assay

    Role of SFKs in the regulation of ER homeostasis. (A) SFK overexpression suffices to induce ER expansion in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and the -Dox counterparts were stained with ER tracker Blue-White DPX at the indicated time points after Dox addition to the cell cultures and analyzed by FACS. ER expansion measured by increases of ER tracker dye fluorescence (lower panel histograms) is correlated to increases in SFK protein levels (GFP fluorescence, upper panel histograms). 18h incubation with 30μM of the pan SFK inhibitor PP2 reduced ER expansion to baseline (-Dox) levels. The correspondent reduction of pY416 after PP2 incubation for each SFK is shown in the bottom-panel histograms. Treatment with 50 µM of the ER-stress inducer Chloroquine (CQ) for 12h was used a positive control for the expected function of the ER-tracker reagent. Graph shows the ratio of ER tracker dye MFI from Lck- or Lyn-expressing cells to -Dox treated cells. Since essentially there was no difference between the Lck and Lyn samples, statistics were calculated for the mean values between each time point (n=4, Unpaired Student t test; mean +/- SD; **P < 0.01, ***P < 0.001; ns, not significant). (B) SFK-driven ER expansion is not concurrent with upregulation of UPR mediators. RT-qPCR of the indicated UPR modulators. Each time point corresponds to samples stained with ER tracker shown in (A) RT-qPCR data are shown log 2 FC of the gene expression between Lck-BJAB (black)/-Dox and Lyn-BJAB (grey)/-Dox (n=2, Multiple unpaired Student t test; mean +/- SD; *P < 0.05, **P < 0.01, ***P < 0.001; ns: not significant). (C) SFK overexpression suffices to induce FAM134B oligomerization in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and their -Dox counterparts were mixed at a ratio of 1:1, immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Sample sets include: i) untreated cells (left-hand side panels) ii) SFK-expressing cells treated with 30μM PP2 for 18h, mixed with untreated -Dox cells (right-hand side panels) to provide a comparative visualization of SFK activity influence on the cargo receptor clustering and iii) -Dox cells treated with 50 µM CQ for 12h (indicative image shown in lower panels of D, below). FAM134B oligomers within single cells, appearing as distinctive puncta, were quantified for each sample. Collective quantitation results from three independent experiments (for the untreated samples) and two independent experiments (for PP2 and CQ treatments) are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=239, -Dox/CQ n=79, Lck-BJAB/untreated n=164, Lck-BJAB/PP2 n=98, Lyn-BJAB/untreated n=144, Lyn-BJAB/PP2 n=84. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001). (D) SFK-driven FAM134B oligomerization does not coincide with LC3 colocalization. Lck- or Lyn-expressing cells and their -Dox counterparts mixed at a ratio of 1:1 (upper panels), or -Dox cells treated with 50 µM CQ for 12h (lower panels) were immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white) and LC3B (red), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Colocalization of FAM134B and LC3 was quantified by the coloc2 pre-installed plugin of Image (J) Collective colocalization analysis results from two independent experiments are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=116, -Dox/CQ n=116, Lck-BJAB/untreated n=76, Lyn-BJAB/untreated n=73. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001).

    Journal: Frontiers in Immunology

    Article Title: Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity

    doi: 10.3389/fimmu.2023.1224520

    Figure Lengend Snippet: Role of SFKs in the regulation of ER homeostasis. (A) SFK overexpression suffices to induce ER expansion in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and the -Dox counterparts were stained with ER tracker Blue-White DPX at the indicated time points after Dox addition to the cell cultures and analyzed by FACS. ER expansion measured by increases of ER tracker dye fluorescence (lower panel histograms) is correlated to increases in SFK protein levels (GFP fluorescence, upper panel histograms). 18h incubation with 30μM of the pan SFK inhibitor PP2 reduced ER expansion to baseline (-Dox) levels. The correspondent reduction of pY416 after PP2 incubation for each SFK is shown in the bottom-panel histograms. Treatment with 50 µM of the ER-stress inducer Chloroquine (CQ) for 12h was used a positive control for the expected function of the ER-tracker reagent. Graph shows the ratio of ER tracker dye MFI from Lck- or Lyn-expressing cells to -Dox treated cells. Since essentially there was no difference between the Lck and Lyn samples, statistics were calculated for the mean values between each time point (n=4, Unpaired Student t test; mean +/- SD; **P < 0.01, ***P < 0.001; ns, not significant). (B) SFK-driven ER expansion is not concurrent with upregulation of UPR mediators. RT-qPCR of the indicated UPR modulators. Each time point corresponds to samples stained with ER tracker shown in (A) RT-qPCR data are shown log 2 FC of the gene expression between Lck-BJAB (black)/-Dox and Lyn-BJAB (grey)/-Dox (n=2, Multiple unpaired Student t test; mean +/- SD; *P < 0.05, **P < 0.01, ***P < 0.001; ns: not significant). (C) SFK overexpression suffices to induce FAM134B oligomerization in an enzymatic activity-related fashion. Lck- or Lyn-expressing cells and their -Dox counterparts were mixed at a ratio of 1:1, immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Sample sets include: i) untreated cells (left-hand side panels) ii) SFK-expressing cells treated with 30μM PP2 for 18h, mixed with untreated -Dox cells (right-hand side panels) to provide a comparative visualization of SFK activity influence on the cargo receptor clustering and iii) -Dox cells treated with 50 µM CQ for 12h (indicative image shown in lower panels of D, below). FAM134B oligomers within single cells, appearing as distinctive puncta, were quantified for each sample. Collective quantitation results from three independent experiments (for the untreated samples) and two independent experiments (for PP2 and CQ treatments) are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=239, -Dox/CQ n=79, Lck-BJAB/untreated n=164, Lck-BJAB/PP2 n=98, Lyn-BJAB/untreated n=144, Lyn-BJAB/PP2 n=84. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001). (D) SFK-driven FAM134B oligomerization does not coincide with LC3 colocalization. Lck- or Lyn-expressing cells and their -Dox counterparts mixed at a ratio of 1:1 (upper panels), or -Dox cells treated with 50 µM CQ for 12h (lower panels) were immobilized on poly-D-lysine coated microscope slides, stained for FAM134B (white) and LC3B (red), and visualized by confocal microscopy. GFP (green) denotes the SFK-expressing cells. Colocalization of FAM134B and LC3 was quantified by the coloc2 pre-installed plugin of Image (J) Collective colocalization analysis results from two independent experiments are displayed on the adjacent graph. Number of cells for each sample -Dox/untreated n=116, -Dox/CQ n=116, Lck-BJAB/untreated n=76, Lyn-BJAB/untreated n=73. Scale bar, 5 µm (n=2, Unpaired Student t test; mean +/- standard deviation [SD]; ****P < 0.0001).

    Article Snippet: The pan-SFK inhibitor PP2 (Calbiochem) was used at 30 μM for 18h in the humidified incubator (for treatment of samples stained with ER tracker) and at 100 μM for 10 min at 37°C (for transient SFK inhibition).

    Techniques: Over Expression, Activity Assay, Expressing, Staining, Fluorescence, Incubation, Positive Control, Quantitative RT-PCR, Gene Expression, Microscopy, Confocal Microscopy, Quantitation Assay, Standard Deviation