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src family activator epqpyeeipiy 169  (Santa Cruz Biotechnology)


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    Structured Review

    Santa Cruz Biotechnology src family activator epqpyeeipiy 169
    Src Family Activator Epqpyeeipiy 169, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 56 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/src%2C+active/Src+Family+Activator/pm41490764-66-0-8
    Average 93 stars, based on 56 article reviews
    src family activator epqpyeeipiy 169 - by Bioz Stars, 2026-09
    93/100 stars

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    other:

    Article Title: Frontotemporal dementia mutant tau (P301L) locks Fyn in an open, active conformation conducive to nanoclustering
    Article Snippet: Membranes were stained for total Fyn (1:1000 rabbit anti-Fyn, Cell Signalling Technology), active Src (1:1000 rabbit anti-phosphor-Y16, Santa Cruz), GAPDH (1:1000 mouse anti-GAPDH, abcam #189095) and GFP (1:1000 rabbit anti-GFP, Millipore #AB3080P); in blocking buffer overnight (4°C).

    Article Title: Mammary Epithelial-Specific Disruption of Focal Adhesion Kinase Retards Tumor Formation and Metastasis in a Transgenic Mouse Model of Human Breast Cancer
    Article Snippet: Anti-rabbit tetramethyl-rhodamine isothiocyanate (Jackson ImmunoResearch Laboratories, West Grove, PA) and bisbenzimide (Sigma) were used as secondary reagents.

    Article Title: The Adaptor Protein TRIP6 Antagonizes Fas-Induced Apoptosis but Promotes Its Effect on Cell Migration
    Article Snippet: The expression of active and total c-Src in whole-cell lysates was determined by immunoblotting using antibodies specific to phospho-Tyr-416-c-Src (Cell Signaling) and total c-Src (Santa Cruz Biotechnology), respectively.

    Article Title: SRC-3 coactivator governs dynamic estrogen-induced chromatin looping interactions during transcription
    Article Snippet: table ft1 table-wrap mode="anchored" t5 REAGENT or RESOURCE SOURCE IDENTIFIER Antibodies SMC1 Bethyl Laboratories A300-055A SMC3 Bethyl Laboratories A300-060A RAD21 Bethyl Laboratories ab154769 MED12 Bethyl Laboratories A300-774A CDK8 Bethyl Laboratories A302-500A HDAC1 Bethyl Laboratories A300-713A SRC-1 Santa Cruz Biotechnology 1135/H4; sc-32789 SRC-2 BD Biosciences 610985 SRC-3 Custom mouse mAb generated at Baylor College of Medicine N/A RNA Pol II (RPB1) Active Motif 101307 ERα Santa Cruz Biotechnology HC-20; sc-543 YY1 Bethyl Laboratories A302-779A Mouse IgG Santa Cruz Biotechnology sc-2025 Rabbit IgG Santa Cruz Biotechnology sc-2027 ECL Anti-Rabbit IgG-HRP conjugate GE Healthcare UK NA934V ECL Anti-Mouse IgG-HRP conjugate GE Healthcare UK NA931V Chemicals, Peptides, and Recombinant Proteins TRI-Reagent Molecular Research Center TR-118 BAN (4-bromoanisole) Molecular Research Center BN-191 Triptolide Sigma-Aldrich T3652 Flavopiridol Sigma-Aldrich F3055 Poly(vinyl alcohol) Sigma-Aldrich P8136 Q5 High-Fidelity DNA Polymerase New England Biolabs M0491 OneTaq Hot Start DNA Polymerase New England Biolabs M0481L Pst I New England Biolabs R0140L Recombinant estrogen receptor alpha (ERα) Thermo Fisher Scientific A15674 T4 DNA Ligase New England Biolabs M0202S 17-β Estradiol (E2) (water-soluble) Sigma-Aldrich E4389 Glycogen Sigma-Aldrich G1767 Critical Commercial Assays TURBO DNA-free kit Invitrogen/Ambion AM1907 SensiFAST SYBR Hi-ROX One-Step kit Bioline BIO-73005 SYBR Green PCR Master Mix Applied Biosystems 4309155 Gibson Assembly Cloning Kit New England Biolabs E5510S TOPO TA Cloning Kit Invitrogen K450001 Lipofectamine RNAiMax Invitrogen 13778150 ECL Plus Western Blotting Substrate Pierce 32132 Experimental Models: Cell Lines MCF-7 Tissue Culture Core, Baylor College of Medicine N/A HeLa Tissue Culture Core, Baylor College of Medicine N/A HeLa S3 (for making bulk NE) Cell Culture Company, LLC HA48 Oligonucleotides Please see Supplemental Table S1 Recombinant DNA: GREB1 BAC clone CTD-3138J7 Invitrogen CTD-3138J7 GREB1 BAC clone CTD-2563K11 Invitrogen CTD-2563K11 NRIP1 BAC clone RP11-1025G18 Invitrogen RP11-1025G18 FOS BAC clone CTD-2655F5 Invitrogen CTD-2655F5 pIE-0 ( Pazin et al., 1994 ) NA Other M280 Streptavidin DynabeadsTM Invitrogen 60210 Protein A Agarose Invitrogen 15918-014 Protein G Sepharose 4B Invitrogen 101242 Quantum Prep PCR Kleen Spin Columns Bio-Rad 732-6300 Open in a separate window KEY RESOURCES TABLE CONTACT FOR REAGENT AND RESOURCE SHARING As Lead Contact, Bert W. O’Malley is responsible for all reagent and resource requests.

    Article Title: The Adaptor Protein TRIP6 Antagonizes Fas-Induced Apoptosis but Promotes Its Effect on Cell Migration
    Article Snippet: The expression of active and total c-Src in whole-cell lysates was determined by immunoblotting using antibodies specific to phospho-Tyr-416–c-Src (Cell Signaling) and total c-Src (Santa Cruz Biotechnology), respectively.

    Article Title: SRC-3 coactivator governs dynamic estrogen-induced chromatin looping interactions during transcription
    Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER Antibodies SMC1 Bethyl Laboratories A300-055A SMC3 Bethyl Laboratories A300-060A RAD21 Bethyl Laboratories ab154769 MED12 Bethyl Laboratories A300-774A CDK8 Bethyl Laboratories A302-500A HDAC1 Bethyl Laboratories A300-713A SRC-1 Santa Cruz Biotechnology 1135/H4; sc-32789 SRC-2 BD Biosciences 610985 SRC-3 Custom mouse mAb generated at Baylor College of Medicine N/A RNA Pol II (RPB1) Active Motif 101307 ERα Santa Cruz Biotechnology HC-20; sc-543 YY1 Bethyl Laboratories A302-779A Mouse IgG Santa Cruz Biotechnology sc-2025 Rabbit IgG Santa Cruz Biotechnology sc-2027 ECL Anti-Rabbit IgG-HRP conjugate GE Healthcare UK NA934V ECL Anti-Mouse IgG-HRP conjugate GE Healthcare UK NA931V Chemicals, Peptides, and Recombinant Proteins TRI-Reagent Molecular Research Center TR-118 BAN (4-bromoanisole) Molecular Research Center BN-191 Triptolide Sigma-Aldrich T3652 Flavopiridol Sigma-Aldrich F3055 Poly(vinyl alcohol) Sigma-Aldrich P8136 Q5 High-Fidelity DNA Polymerase New England Biolabs M0491 OneTaq Hot Start DNA Polymerase New England Biolabs M0481L Pst I New England Biolabs R0140L Recombinant estrogen receptor alpha (ERα) Thermo Fisher Scientific A15674 T4 DNA Ligase New England Biolabs M0202S 17-β Estradiol (E2) (water-soluble) Sigma-Aldrich E4389 Glycogen Sigma-Aldrich G1767 Critical Commercial Assays TURBO DNA-free kit Invitrogen/Ambion AM1907 SensiFAST SYBR Hi-ROX One-Step kit Bioline BIO-73005 SYBR Green PCR Master Mix Applied Biosystems 4309155 Gibson Assembly Cloning Kit New England Biolabs E5510S TOPO TA Cloning Kit Invitrogen K450001 Lipofectamine RNAiMax Invitrogen 13778150 ECL Plus Western Blotting Substrate Pierce 32132 Experimental Models: Cell Lines MCF-7 Tissue Culture Core, Baylor College of Medicine N/A HeLa Tissue Culture Core, Baylor College of Medicine N/A HeLa S3 (for making bulk NE) Cell Culture Company, LLC HA48 Oligonucleotides Please see Supplemental Table S1 Recombinant DNA: GREB1 BAC clone CTD-3138J7 Invitrogen CTD-3138J7 GREB1 BAC clone CTD-2563K11 Invitrogen CTD-2563K11 NRIP1 BAC clone RP11-1025G18 Invitrogen RP11-1025G18 FOS BAC clone CTD-2655F5 Invitrogen CTD-2655F5 pIE-0 ( Pazin et al., 1994 ) NA Other M280 Streptavidin DynabeadsTM Invitrogen 60210 Protein A Agarose Invitrogen 15918-014 Protein G Sepharose 4B Invitrogen 101242 Quantum Prep PCR Kleen Spin Columns Bio-Rad 732-6300 Open in a separate window KEY RESOURCES TABLE

    Chromatin Immunoprecipitation:

    Article Title: Estrogen Receptor α Inhibits p53-Mediated Transcriptional Repression: Implications for the Regulation of Apoptosis
    Article Snippet: .. Antibodies used for ChIP assays and Western blotting were as follows: p53 (DO-1), ERa (HC-20 and D-12), Survivin (FL-142), SRC-1 (M-341), SRC-3 (M-397), lamin A/C (H110), and poly(ADP-ribose) polymerase (PARP; F-2) from Santa Cruz Biotechnology; PARP (9542) from Cell Signaling Technology, Inc.; HDAC1 (2E10) from Millipore; HDAC4 from Active Motif; h-actin (A2066) and tubulin (T-2046) from Sigma; and horseradish peroxidase–conjugated secondary antibodies from Bio-Rad. ..

    Western Blot:

    Article Title: Estrogen Receptor α Inhibits p53-Mediated Transcriptional Repression: Implications for the Regulation of Apoptosis
    Article Snippet: .. Antibodies used for ChIP assays and Western blotting were as follows: p53 (DO-1), ERa (HC-20 and D-12), Survivin (FL-142), SRC-1 (M-341), SRC-3 (M-397), lamin A/C (H110), and poly(ADP-ribose) polymerase (PARP; F-2) from Santa Cruz Biotechnology; PARP (9542) from Cell Signaling Technology, Inc.; HDAC1 (2E10) from Millipore; HDAC4 from Active Motif; h-actin (A2066) and tubulin (T-2046) from Sigma; and horseradish peroxidase–conjugated secondary antibodies from Bio-Rad. ..



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    a Kinase Library prediction heatmap based on the peptide primary sequence of the SHP2 Y62 phosphosite plotted on human kinome evolutionary tree. TK—Tyrosine kinases, CAMK—calcium calmodulin-dependent kinases, TKL—Tyrosine kinase-like, STE- sterile kinases, CK1—Casein Kinase 1. b SFK multi-kinase and selective inhibitors with targets shown, tested here. c , d Immunoblot analysis of ( c ) U-2 OS cells and ( d ) HCC827 cells treated with dasatinib and SU6656 at indicated concentrations, and DMSO. e , f Immunoblot analysis of HCC827 cells treated with ( e ) saracatinib, CH6953755, and PP2, and ( f ) double and triple combinations at indicated concentrations, and DMSO. g Immunoblot analysis of SYF knock out and wildtype MEFs. h In vitro kinase assays with recombinant <t>SRC,</t> <t>YES1,</t> and FYN kinases and recombinant SHP2 WT and SHP2 Y62F . The SHP2 pY542 antibody demonstrated nonspecific binding in the control conditions. All immunoblots are representative of one of the three independent experiments. The unit of molecular weight markers in Western blots is kDa. Source data are provided as source data file.
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    Image Search Results


    a Kinase Library prediction heatmap based on the peptide primary sequence of the SHP2 Y62 phosphosite plotted on human kinome evolutionary tree. TK—Tyrosine kinases, CAMK—calcium calmodulin-dependent kinases, TKL—Tyrosine kinase-like, STE- sterile kinases, CK1—Casein Kinase 1. b SFK multi-kinase and selective inhibitors with targets shown, tested here. c , d Immunoblot analysis of ( c ) U-2 OS cells and ( d ) HCC827 cells treated with dasatinib and SU6656 at indicated concentrations, and DMSO. e , f Immunoblot analysis of HCC827 cells treated with ( e ) saracatinib, CH6953755, and PP2, and ( f ) double and triple combinations at indicated concentrations, and DMSO. g Immunoblot analysis of SYF knock out and wildtype MEFs. h In vitro kinase assays with recombinant SRC, YES1, and FYN kinases and recombinant SHP2 WT and SHP2 Y62F . The SHP2 pY542 antibody demonstrated nonspecific binding in the control conditions. All immunoblots are representative of one of the three independent experiments. The unit of molecular weight markers in Western blots is kDa. Source data are provided as source data file.

    Journal: Nature Communications

    Article Title: A hotspot phosphorylation site on SHP2 drives oncoprotein activation and drug resistance

    doi: 10.1038/s41467-026-70060-8

    Figure Lengend Snippet: a Kinase Library prediction heatmap based on the peptide primary sequence of the SHP2 Y62 phosphosite plotted on human kinome evolutionary tree. TK—Tyrosine kinases, CAMK—calcium calmodulin-dependent kinases, TKL—Tyrosine kinase-like, STE- sterile kinases, CK1—Casein Kinase 1. b SFK multi-kinase and selective inhibitors with targets shown, tested here. c , d Immunoblot analysis of ( c ) U-2 OS cells and ( d ) HCC827 cells treated with dasatinib and SU6656 at indicated concentrations, and DMSO. e , f Immunoblot analysis of HCC827 cells treated with ( e ) saracatinib, CH6953755, and PP2, and ( f ) double and triple combinations at indicated concentrations, and DMSO. g Immunoblot analysis of SYF knock out and wildtype MEFs. h In vitro kinase assays with recombinant SRC, YES1, and FYN kinases and recombinant SHP2 WT and SHP2 Y62F . The SHP2 pY542 antibody demonstrated nonspecific binding in the control conditions. All immunoblots are representative of one of the three independent experiments. The unit of molecular weight markers in Western blots is kDa. Source data are provided as source data file.

    Article Snippet: SRC (Cat# S19-18G), YES1 (Cat# Y01-10G), and FYN (Cat# F15-10G) kinase proteins were purchased from SinoBiological.

    Techniques: Sequencing, Phospho-proteomics, Sterility, Western Blot, Knock-Out, In Vitro, Recombinant, Binding Assay, Control, Molecular Weight

    Src directly phosphorylates TAB1-Y481. A , the domain structure of TAB1 and the amino acid sequence around Y481. Conserved phosphorylation serine/threonine and tyrosine sites in the C-terminal regions are highlighted in green / blue and red . B , COS-7 cells were transfected with EGFP-tagged full-length (FL), N-terminal (N), or C-terminal (C) TAB1 and Src. C , COS-7 cells were transfected with EGFP-TAB1 and Src. Dasatinib (0.1 μM) was added 1 h before cells were harvested. D , COS-7 cells were transfected with TAB1-C or its Y481F mutant (YF) and Src. Cell lysates and immunoprecipitates with an anti-GFP antibody were immunoblotted with anti-phosphotyrosine and anti-GFP antibodies. The expression of active Src was detected by an anti-phospho-Src family kinase (Y419) antibody ( B – D ). E , an in vitro kinase assay was performed using recombinant GST-TAB1-C and active GST-Src proteins. F , COS-7 cells were transfected with EGFP-TAB1 with SFKs, including Src, Fyn, Lyn, and Lck. G , HCT-116-Src cells were treated with 10 ng/ml doxycycline (Dox) for 24 h. TAB1-Y481 phosphorylation and other proteins were detected by an anti-phospho-Y481-TAB1 antibody and the antibodies described above, respectively ( E – G ). H , the relative quantification of pY481-TAB1, normalized to total TAB1, is presented as the mean ± SD from three independent experiments. p values were calculated using Welch’s two-tailed t test. ∗ p < 0.05.

    Journal: The Journal of Biological Chemistry

    Article Title: The stress-activated kinase p38 mediates non-canonical activation of Src and tyrosine phosphorylation of the adapter protein TAB1

    doi: 10.1016/j.jbc.2026.111200

    Figure Lengend Snippet: Src directly phosphorylates TAB1-Y481. A , the domain structure of TAB1 and the amino acid sequence around Y481. Conserved phosphorylation serine/threonine and tyrosine sites in the C-terminal regions are highlighted in green / blue and red . B , COS-7 cells were transfected with EGFP-tagged full-length (FL), N-terminal (N), or C-terminal (C) TAB1 and Src. C , COS-7 cells were transfected with EGFP-TAB1 and Src. Dasatinib (0.1 μM) was added 1 h before cells were harvested. D , COS-7 cells were transfected with TAB1-C or its Y481F mutant (YF) and Src. Cell lysates and immunoprecipitates with an anti-GFP antibody were immunoblotted with anti-phosphotyrosine and anti-GFP antibodies. The expression of active Src was detected by an anti-phospho-Src family kinase (Y419) antibody ( B – D ). E , an in vitro kinase assay was performed using recombinant GST-TAB1-C and active GST-Src proteins. F , COS-7 cells were transfected with EGFP-TAB1 with SFKs, including Src, Fyn, Lyn, and Lck. G , HCT-116-Src cells were treated with 10 ng/ml doxycycline (Dox) for 24 h. TAB1-Y481 phosphorylation and other proteins were detected by an anti-phospho-Y481-TAB1 antibody and the antibodies described above, respectively ( E – G ). H , the relative quantification of pY481-TAB1, normalized to total TAB1, is presented as the mean ± SD from three independent experiments. p values were calculated using Welch’s two-tailed t test. ∗ p < 0.05.

    Article Snippet: The recombinant human GST-TAB1-C protein (WT and Y481F) derived from Escherichia coli ( ) was reacted with the recombinant human active GST-Src kinase derived from insect cells (Carna Bioscience) at 30 °C for 30 min in 30 μl of reaction buffer containing 20 mM HEPES (pH 7.6), 20 mM MgCl 2 , 0.2 mM ATP, 2 mM DTT, 20 mM β-glycerophosphate, and 0.1 mM sodium orthovanadate.

    Techniques: Sequencing, Phospho-proteomics, Transfection, Mutagenesis, Expressing, In Vitro, Kinase Assay, Recombinant, Quantitative Proteomics, Two Tailed Test

    ISX9 activates the Wnt/β-catenin signaling pathway in mouse hippocampal neuronal HT22 cells. ( A ) The SuperTOPFlash reporter gene was transfected into HT22 cells, and the cells were treated with solvent control (DMSO) and gradient concentrations of ISX9 (2.5-40 μM) for 24 h. Subsequently, the cells were lysed, and the fluorescence intensity was detected and normalized based on the value of the β-gal. ( B ) HT22 cells were treated with control and gradient concentrations of ISX9 (2.5-40 μM) for 24 h. The expression levels of endogenous β-catenin and activated β-catenin proteins were detected by Western blot. Quantitative analysis was performed by ImageJ and normalized relative to GAPDH values, and results were presented on the right. ( C ) HT22 cells were treated with control and 20 μM ISX9 for 24 h, respectively, followed by precipitation of cell lysates with an anti-AXIN1 antibody. The interaction of AXIN1 with LRP6 or β-catenin was detected by immunoblotting. ( D ) HT22 cells were treated with control or gradient concentrations of ISX9 (2.5-20 μM) for 24 h, respectively. After cell lysis, total RNA was extracted, and cDNA was obtained by reverse transcription. RT-qPCR was performed to detect the mRNA expression levels of Wnt target genes NOTUM, AXIN2 and SURVIVIN. The data shown are the mean ± SD (n = 3). Statistical significance was tested by one-way ANOVA followed by the Tukey test. * p < 0.05, ** p < 0.01, and *** p < 0.001 indicated that there was a significant difference compared with the control group

    Journal: Alzheimer's Research & Therapy

    Article Title: ISX9 activates the Wnt/β-catenin signaling pathway and exerts neuroprotective effects in Alzheimer’s disease

    doi: 10.1186/s13195-026-01961-5

    Figure Lengend Snippet: ISX9 activates the Wnt/β-catenin signaling pathway in mouse hippocampal neuronal HT22 cells. ( A ) The SuperTOPFlash reporter gene was transfected into HT22 cells, and the cells were treated with solvent control (DMSO) and gradient concentrations of ISX9 (2.5-40 μM) for 24 h. Subsequently, the cells were lysed, and the fluorescence intensity was detected and normalized based on the value of the β-gal. ( B ) HT22 cells were treated with control and gradient concentrations of ISX9 (2.5-40 μM) for 24 h. The expression levels of endogenous β-catenin and activated β-catenin proteins were detected by Western blot. Quantitative analysis was performed by ImageJ and normalized relative to GAPDH values, and results were presented on the right. ( C ) HT22 cells were treated with control and 20 μM ISX9 for 24 h, respectively, followed by precipitation of cell lysates with an anti-AXIN1 antibody. The interaction of AXIN1 with LRP6 or β-catenin was detected by immunoblotting. ( D ) HT22 cells were treated with control or gradient concentrations of ISX9 (2.5-20 μM) for 24 h, respectively. After cell lysis, total RNA was extracted, and cDNA was obtained by reverse transcription. RT-qPCR was performed to detect the mRNA expression levels of Wnt target genes NOTUM, AXIN2 and SURVIVIN. The data shown are the mean ± SD (n = 3). Statistical significance was tested by one-way ANOVA followed by the Tukey test. * p < 0.05, ** p < 0.01, and *** p < 0.001 indicated that there was a significant difference compared with the control group

    Article Snippet: Equal amounts of proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and transferred to polyvinylidene difluoride (PVDF) membranes for immunoblotting with the following antibodies: anti-β-catenin (Santa Cruz Biotechnology, Cat#sc-7963), anti-active β-catenin (Cell Signaling Technology, Cat#8814), anti-GAPDH (Transgen Biotech, Cat#HC301), anti-APP (Proteintech, Cat#27320-1-AP), anti-BACE1 (Proteintech, Cat#12807-1-AP), anti-Aβ (Proteintech, Cat#25524-1-AP), anti-Tau (Proteintech, Cat#10274-1-AP), anti-Phospho-Tau (S404) (Proteintech, Cat#81383-1-RR), anti-ZO-1 (Cell Signaling Technology, Cat#5406), anti-OCCLUDIN (Proteintech, Cat#5506), anti-GLUT1 (Proteintech, Cat#21829-1-AP), anti-LGR5 (Abcam, Cat#ab75732), and anti-SOX2 (Cell Signaling Technology, Cat#23064).

    Techniques: Transfection, Solvent, Control, Fluorescence, Expressing, Western Blot, Lysis, Reverse Transcription, Quantitative RT-PCR

    ISX9 enhances the proliferation, and promotes the expression of stemness-related Wnt target genes in hippocampal neuronal cells. HT22 cells were treated with control or gradient concentrations of ISX9 for 24 h, respectively. The cell viability ( A ) and proliferation ( B ) of HT22 cells were detected by MTT and BrdU assays. ( C ) HT22 cells were treated with control or ISX9 (2.5-20 μM) for 24 h, respectively. The cells were lysed to extract total RNA, which was then subjected to reverse transcription for cDNA synthesis. RT-qPCR was performed to detect the mRNA expression levels of stemness-related Wnt target genes LGR5 and SOX2. ( D - F ) HT22 cells were treated with control and 20 μM of ISX9 for 24 h. Then the cells were fixed and followed by IF staining with DAPI and anti-β-catenin antibody ( D ) or anti-LGR5 antibody ( E ) or anti-SOX2 antibody ( F ). Alexa Fluor 594 conjugated goat anti-mouse IgG antibodies were used as secondary antibodies. Scale bar, 20 μm. The results of the quantitative fluorescence analysis were presented on the right. The data shown are the mean ± SD (n = 3). Statistical significance was tested by one-way ANOVA followed by the Tukey test. * p < 0.05, ** p < 0.01, and *** p < 0.001 indicated that there was a significant difference compared with the control group

    Journal: Alzheimer's Research & Therapy

    Article Title: ISX9 activates the Wnt/β-catenin signaling pathway and exerts neuroprotective effects in Alzheimer’s disease

    doi: 10.1186/s13195-026-01961-5

    Figure Lengend Snippet: ISX9 enhances the proliferation, and promotes the expression of stemness-related Wnt target genes in hippocampal neuronal cells. HT22 cells were treated with control or gradient concentrations of ISX9 for 24 h, respectively. The cell viability ( A ) and proliferation ( B ) of HT22 cells were detected by MTT and BrdU assays. ( C ) HT22 cells were treated with control or ISX9 (2.5-20 μM) for 24 h, respectively. The cells were lysed to extract total RNA, which was then subjected to reverse transcription for cDNA synthesis. RT-qPCR was performed to detect the mRNA expression levels of stemness-related Wnt target genes LGR5 and SOX2. ( D - F ) HT22 cells were treated with control and 20 μM of ISX9 for 24 h. Then the cells were fixed and followed by IF staining with DAPI and anti-β-catenin antibody ( D ) or anti-LGR5 antibody ( E ) or anti-SOX2 antibody ( F ). Alexa Fluor 594 conjugated goat anti-mouse IgG antibodies were used as secondary antibodies. Scale bar, 20 μm. The results of the quantitative fluorescence analysis were presented on the right. The data shown are the mean ± SD (n = 3). Statistical significance was tested by one-way ANOVA followed by the Tukey test. * p < 0.05, ** p < 0.01, and *** p < 0.001 indicated that there was a significant difference compared with the control group

    Article Snippet: Equal amounts of proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and transferred to polyvinylidene difluoride (PVDF) membranes for immunoblotting with the following antibodies: anti-β-catenin (Santa Cruz Biotechnology, Cat#sc-7963), anti-active β-catenin (Cell Signaling Technology, Cat#8814), anti-GAPDH (Transgen Biotech, Cat#HC301), anti-APP (Proteintech, Cat#27320-1-AP), anti-BACE1 (Proteintech, Cat#12807-1-AP), anti-Aβ (Proteintech, Cat#25524-1-AP), anti-Tau (Proteintech, Cat#10274-1-AP), anti-Phospho-Tau (S404) (Proteintech, Cat#81383-1-RR), anti-ZO-1 (Cell Signaling Technology, Cat#5406), anti-OCCLUDIN (Proteintech, Cat#5506), anti-GLUT1 (Proteintech, Cat#21829-1-AP), anti-LGR5 (Abcam, Cat#ab75732), and anti-SOX2 (Cell Signaling Technology, Cat#23064).

    Techniques: Expressing, Control, Reverse Transcription, cDNA Synthesis, Quantitative RT-PCR, Staining, Fluorescence

    ISX9 activates Wnt/β-catenin signaling in the hippocampus of AD mice. ( A ) Expression levels of total β-catenin and activated β-catenin protein in hippocampal tissues of WT, WT/ISX9, AD and AD/ISX9 group mice. The below bars show the results of quantification of the immunoblotting images by ImageJ and normalization relative to GAPDH values. ( B ) Protein was extracted from the hippocampal tissues of mice, followed by precipitation with an anti-AXIN1 antibody. The interaction of AXIN1 with LRP6 or β-catenin was detected by immunoblotting. ( C ) Total RNA extracted from mouse hippocampal tissues of mice was reverse transcribed to obtain cDNA, and then RT-qPCR was performed to detect the mRNA expression levels of Wnt target genes NOTUM, AXIN2 and SURVIVIN

    Journal: Alzheimer's Research & Therapy

    Article Title: ISX9 activates the Wnt/β-catenin signaling pathway and exerts neuroprotective effects in Alzheimer’s disease

    doi: 10.1186/s13195-026-01961-5

    Figure Lengend Snippet: ISX9 activates Wnt/β-catenin signaling in the hippocampus of AD mice. ( A ) Expression levels of total β-catenin and activated β-catenin protein in hippocampal tissues of WT, WT/ISX9, AD and AD/ISX9 group mice. The below bars show the results of quantification of the immunoblotting images by ImageJ and normalization relative to GAPDH values. ( B ) Protein was extracted from the hippocampal tissues of mice, followed by precipitation with an anti-AXIN1 antibody. The interaction of AXIN1 with LRP6 or β-catenin was detected by immunoblotting. ( C ) Total RNA extracted from mouse hippocampal tissues of mice was reverse transcribed to obtain cDNA, and then RT-qPCR was performed to detect the mRNA expression levels of Wnt target genes NOTUM, AXIN2 and SURVIVIN

    Article Snippet: Equal amounts of proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and transferred to polyvinylidene difluoride (PVDF) membranes for immunoblotting with the following antibodies: anti-β-catenin (Santa Cruz Biotechnology, Cat#sc-7963), anti-active β-catenin (Cell Signaling Technology, Cat#8814), anti-GAPDH (Transgen Biotech, Cat#HC301), anti-APP (Proteintech, Cat#27320-1-AP), anti-BACE1 (Proteintech, Cat#12807-1-AP), anti-Aβ (Proteintech, Cat#25524-1-AP), anti-Tau (Proteintech, Cat#10274-1-AP), anti-Phospho-Tau (S404) (Proteintech, Cat#81383-1-RR), anti-ZO-1 (Cell Signaling Technology, Cat#5406), anti-OCCLUDIN (Proteintech, Cat#5506), anti-GLUT1 (Proteintech, Cat#21829-1-AP), anti-LGR5 (Abcam, Cat#ab75732), and anti-SOX2 (Cell Signaling Technology, Cat#23064).

    Techniques: Expressing, Western Blot, Reverse Transcription, Quantitative RT-PCR