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c src family phospho tyr416  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc c src family phospho tyr416
    C Src Family Phospho Tyr416, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 96/100, based on 931 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/c+src+family+phospho+tyr416/Phospho-Src+Family+(Tyr416)+Rabbit+mAb/pm41871717-58-48-63
    Average 96 stars, based on 931 article reviews
    c src family phospho tyr416 - by Bioz Stars, 2026-09
    96/100 stars

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    Article Title: KR-62980, a novel PPARγ agonist, inhibits collagen-induced platelet activation and thrombus formation by regulating the GPVI signaling pathway.
    Article Snippet: The antibodies used in this study were purchased from the following suppliers: β-actin (#LF-PA0207) from Abfrontier (Seoul, Korea); LATphospho-Tyr132 (#ab4476) and Vav1 (#ab40875) from Abcam (Cambridge, UK); PE-labeled anti-P-selectin (CD62P, #555524) and FITClabeled PAC-1 (#340507) from BD Biosciences (San Jose, CA, USA); Bruton's tyrosine kinase (Btk) (#56044 T), c-Src family-phospho-Tyr416 (#6943 T), phospho-Ser protein kinase C (PKC) substrate (#2261), and Syk-phospho-Tyr352 (#2717) from Cell Signaling Technology (Danvers, MA, USA); Btk-phospho-Tyr551 (#44-1355G) from Invitrogen (Carlsbad, CA, USA); phosphotyrosine (clone 4G10, #05–321) and anti-FcRγ (#06–727) from Millipore (Billerica, MA, USA); Fyn (#sc-434), agaroseconjugated-anti-Fyn (#sc-434 AC), LAT (#sc-53550), Lyn (#sc-7274), agarose-conjugated-anti-Lyn (#sc-7274 AC), PLCγ2 (#sc-5283), PLCγ2phospho-Tyr753 (#sc-101785), PPARγ (#sc-7273), SH2 domaincontaining leukocyte protein of 76 kDa (SLP-76) (#sc-9062), Syk (#sc-1240), and Vav1-phospho-Tyr174 (#sc-135788) from Santa Cruz Biotechnology (Dallas, TX, USA); mouse IgG-horseradish peroxidase (#5220–0341) and rabbit IgG-horseradish peroxidase (#5220–0458) from Seracare Life Sciences (Milford, MA, USA); ADAP (#07–546), Gab2 (#06–967), and Grb2-related adaptor protein downstream of Shc (Gads) (#06–983) from Upstate (Lake Placid, NY, USA).



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    Cav1 tyrosine (Y)-14 phosphorylation induced by APC–PAR1 is mediated by c-Src. A – C, endothelial EA.hy926 cells were pretreated with dasatinib or DMSO prior to addition of APC. Cell lysates were then immunoblotted to detect Cav1 Y14 and c-Src <t>Y416</t> phosphorylation as indicated. D – G, endothelial cells transfected with nonspecific (NS) or c-Src-specific siRNA were treated with or without APC, lysed, and immunoblotted as indicated. β-tubulin and GAPDH were used as loading controls. The data were quantified (mean ± SD) from four independent biological replicates and expressed as the fraction relative to the untreated control and analyzed by two-way ANOVA followed by Šídák's multiple comparisons test. ( B ) ∗ p = 0.0136; ( C ) ∗∗ p = 0.0038; ( F ) ∗∗∗ p = 0.0003; and ( G ) ∗ p = 0.0125. Student's unpaired t test, ( E ) ∗∗∗ p = 0.0002. APC, activated protein C; Cav1, caveolin-1; DMSO, dimethyl sulfoxide; PAR1, protease-activated receptor 1.
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    Cav1 tyrosine (Y)-14 phosphorylation induced by APC–PAR1 is mediated by c-Src. A – C, endothelial EA.hy926 cells were pretreated with dasatinib or DMSO prior to addition of APC. Cell lysates were then immunoblotted to detect Cav1 Y14 and c-Src Y416 phosphorylation as indicated. D – G, endothelial cells transfected with nonspecific (NS) or c-Src-specific siRNA were treated with or without APC, lysed, and immunoblotted as indicated. β-tubulin and GAPDH were used as loading controls. The data were quantified (mean ± SD) from four independent biological replicates and expressed as the fraction relative to the untreated control and analyzed by two-way ANOVA followed by Šídák's multiple comparisons test. ( B ) ∗ p = 0.0136; ( C ) ∗∗ p = 0.0038; ( F ) ∗∗∗ p = 0.0003; and ( G ) ∗ p = 0.0125. Student's unpaired t test, ( E ) ∗∗∗ p = 0.0002. APC, activated protein C; Cav1, caveolin-1; DMSO, dimethyl sulfoxide; PAR1, protease-activated receptor 1.

    Journal: The Journal of Biological Chemistry

    Article Title: Activated protein C drives β-arrestin-2- and c-Src-dependent phosphorylation of Cav1 and modulates Cav1 association with PAR1 and GRK5

    doi: 10.1016/j.jbc.2026.111190

    Figure Lengend Snippet: Cav1 tyrosine (Y)-14 phosphorylation induced by APC–PAR1 is mediated by c-Src. A – C, endothelial EA.hy926 cells were pretreated with dasatinib or DMSO prior to addition of APC. Cell lysates were then immunoblotted to detect Cav1 Y14 and c-Src Y416 phosphorylation as indicated. D – G, endothelial cells transfected with nonspecific (NS) or c-Src-specific siRNA were treated with or without APC, lysed, and immunoblotted as indicated. β-tubulin and GAPDH were used as loading controls. The data were quantified (mean ± SD) from four independent biological replicates and expressed as the fraction relative to the untreated control and analyzed by two-way ANOVA followed by Šídák's multiple comparisons test. ( B ) ∗ p = 0.0136; ( C ) ∗∗ p = 0.0038; ( F ) ∗∗∗ p = 0.0003; and ( G ) ∗ p = 0.0125. Student's unpaired t test, ( E ) ∗∗∗ p = 0.0002. APC, activated protein C; Cav1, caveolin-1; DMSO, dimethyl sulfoxide; PAR1, protease-activated receptor 1.

    Article Snippet: In this study, the following antibodies were used: mouse anti–PAR1 WEDE (Beckman Coulter, #IM2584), anti-Cav1 (CST, #3267S and BD, #610060), anti-Cav1 Y14 phospho antibody (CST, #3251), anti-βarr2 (Abcam, #ab54790), GAPDH (GeneTex, #GT239), c-Src Y416 (CST, #2101), anti-c-Src (CST, #2109), GRK5 (Santa Cruz, #sc-518005), GRK5 polyclonal antibody (Invitrogen, #PA5-96262) anti-GRK4-6 (Millipore, #05-466), anti-HA (CST, #3724S), anti-rabbit IgG (CST, #2729), anti-β-Tubulin (CST, #86298), anti–early endosome antigen-1 (BD Biosciences, #610457), anti-Vinculin (Sigma, #V9131), and anti-HA conjugated to horseradish peroxidase (Roche, #11667475001).

    Techniques: Phospho-proteomics, Transfection, Control

    βarr2 is required for APC-stimulated c-Src tyrosine (Y)-416 phosphorylation and Cav1 Y14 phosphorylation. Endothelial EA.hy926 cells were transfected with nonspecific (NS) or βarr2-specific siRNA, treated with APC, and c-Src Y416 phosphorylation ( A and B ) and Cav1 Y14 phosphorylation ( C and D ) were detected by immunoblotting as indicated. GAPDH was used as a loading control. The data were quantified (mean ± SD) from four independent biological replicates and expressed as the fraction relative to the untreated control and analyzed by two-way ANOVA followed by Šídák's multiple comparisons test. B, NS siRNA with and without APC, ∗∗ p = 0.0097; ns = not significant. D, NS siRNA with and without APC ∗∗∗ p = 0.0009; βarr2 siRNA with and without APC, ∗∗ p = 0.0061. APC, activated protein C; βarr2, β-arrestin-2; Cav1, caveolin-1.

    Journal: The Journal of Biological Chemistry

    Article Title: Activated protein C drives β-arrestin-2- and c-Src-dependent phosphorylation of Cav1 and modulates Cav1 association with PAR1 and GRK5

    doi: 10.1016/j.jbc.2026.111190

    Figure Lengend Snippet: βarr2 is required for APC-stimulated c-Src tyrosine (Y)-416 phosphorylation and Cav1 Y14 phosphorylation. Endothelial EA.hy926 cells were transfected with nonspecific (NS) or βarr2-specific siRNA, treated with APC, and c-Src Y416 phosphorylation ( A and B ) and Cav1 Y14 phosphorylation ( C and D ) were detected by immunoblotting as indicated. GAPDH was used as a loading control. The data were quantified (mean ± SD) from four independent biological replicates and expressed as the fraction relative to the untreated control and analyzed by two-way ANOVA followed by Šídák's multiple comparisons test. B, NS siRNA with and without APC, ∗∗ p = 0.0097; ns = not significant. D, NS siRNA with and without APC ∗∗∗ p = 0.0009; βarr2 siRNA with and without APC, ∗∗ p = 0.0061. APC, activated protein C; βarr2, β-arrestin-2; Cav1, caveolin-1.

    Article Snippet: In this study, the following antibodies were used: mouse anti–PAR1 WEDE (Beckman Coulter, #IM2584), anti-Cav1 (CST, #3267S and BD, #610060), anti-Cav1 Y14 phospho antibody (CST, #3251), anti-βarr2 (Abcam, #ab54790), GAPDH (GeneTex, #GT239), c-Src Y416 (CST, #2101), anti-c-Src (CST, #2109), GRK5 (Santa Cruz, #sc-518005), GRK5 polyclonal antibody (Invitrogen, #PA5-96262) anti-GRK4-6 (Millipore, #05-466), anti-HA (CST, #3724S), anti-rabbit IgG (CST, #2729), anti-β-Tubulin (CST, #86298), anti–early endosome antigen-1 (BD Biosciences, #610457), anti-Vinculin (Sigma, #V9131), and anti-HA conjugated to horseradish peroxidase (Roche, #11667475001).

    Techniques: Phospho-proteomics, Transfection, Western Blot, Control

    Model of PAR1–GRK5–βarr2–c-Src regulation by Cav1. A substantial population of PAR1–Cav1 and GRK5–Cav1 complexes coexist at the plasma membrane under basal conditions. APC bound to EPCR cleaves and activates PAR1, resulting in GRK5-dependent phosphorylation of the receptor C-terminal tail within 30 min. This may occur during a time when GRK5 dissociates from Cav1. Next, APC-activated and phosphorylated PAR1 recruits βarr2, which promotes activation of c-Src Y416 phosphorylation and c-Src-dependent Cav1 Y14 phosphorylation, a process that occurs after 30 min and is sustained through 90 min. At 30 min, GRK5–Cav1 may reassociate, whereas activated PAR1 and Y14 phosphorylated Cav1 remain dissociated through the 90 min interval. APC, activated protein C; βarr2, βarr2; Cav1, caveolin-1; EPCR, endothelial protein C receptor; GRK5, GPCR kinase 5; PAR1, protease-activated receptor-1.

    Journal: The Journal of Biological Chemistry

    Article Title: Activated protein C drives β-arrestin-2- and c-Src-dependent phosphorylation of Cav1 and modulates Cav1 association with PAR1 and GRK5

    doi: 10.1016/j.jbc.2026.111190

    Figure Lengend Snippet: Model of PAR1–GRK5–βarr2–c-Src regulation by Cav1. A substantial population of PAR1–Cav1 and GRK5–Cav1 complexes coexist at the plasma membrane under basal conditions. APC bound to EPCR cleaves and activates PAR1, resulting in GRK5-dependent phosphorylation of the receptor C-terminal tail within 30 min. This may occur during a time when GRK5 dissociates from Cav1. Next, APC-activated and phosphorylated PAR1 recruits βarr2, which promotes activation of c-Src Y416 phosphorylation and c-Src-dependent Cav1 Y14 phosphorylation, a process that occurs after 30 min and is sustained through 90 min. At 30 min, GRK5–Cav1 may reassociate, whereas activated PAR1 and Y14 phosphorylated Cav1 remain dissociated through the 90 min interval. APC, activated protein C; βarr2, βarr2; Cav1, caveolin-1; EPCR, endothelial protein C receptor; GRK5, GPCR kinase 5; PAR1, protease-activated receptor-1.

    Article Snippet: In this study, the following antibodies were used: mouse anti–PAR1 WEDE (Beckman Coulter, #IM2584), anti-Cav1 (CST, #3267S and BD, #610060), anti-Cav1 Y14 phospho antibody (CST, #3251), anti-βarr2 (Abcam, #ab54790), GAPDH (GeneTex, #GT239), c-Src Y416 (CST, #2101), anti-c-Src (CST, #2109), GRK5 (Santa Cruz, #sc-518005), GRK5 polyclonal antibody (Invitrogen, #PA5-96262) anti-GRK4-6 (Millipore, #05-466), anti-HA (CST, #3724S), anti-rabbit IgG (CST, #2729), anti-β-Tubulin (CST, #86298), anti–early endosome antigen-1 (BD Biosciences, #610457), anti-Vinculin (Sigma, #V9131), and anti-HA conjugated to horseradish peroxidase (Roche, #11667475001).

    Techniques: Clinical Proteomics, Membrane, Phospho-proteomics, Activation Assay

    KEY RESOURCES TABLE

    Journal: Cell reports

    Article Title: Blood flow patterns switch VEGFR2 activity through differential S-nitrosylation and S-oxidation

    doi: 10.1016/j.celrep.2023.113361

    Figure Lengend Snippet: KEY RESOURCES TABLE

    Article Snippet: c-SRC (pY416) , Cell Signaling Technology , Cat# 2101; RRID:AB_331697.

    Techniques: Virus, Recombinant, Biotin Switch Assay, Mutagenesis, Control, Sequencing, Software