mouse anti atg5 primary antibody (Proteintech)
Structured Review

Mouse Anti Atg5 Primary Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 530 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mouse+anti+atg5/pmc13018516-212-9-17?v=Proteintech
Average 96 stars, based on 530 article reviews
Images
1) Product Images from "Nitric Oxide Donor Alleviates Cardiac Arrest Induced Blood Brain Barrier Injury by Inhibiting HMGB1-ATG5 Mediated Endothelial Autophagy"
Article Title: Nitric Oxide Donor Alleviates Cardiac Arrest Induced Blood Brain Barrier Injury by Inhibiting HMGB1-ATG5 Mediated Endothelial Autophagy
Journal: Cellular and Molecular Neurobiology
doi: 10.1007/s10571-026-01706-w
Figure Legend Snippet: HMGB1 regulates autophagy in endothelial cells through interacting with ATG5. A PPI network functional enrichment analysis of HMGB1 and ATG5. B Molecular docking model showing the predicted interaction interface between HMGB1 (yellow) and ATG5 (blue). The surface structure of the docking complex is displayed on the left. The enlarged panel on the right shows the predicted binding interface and key interacting residues. Hydrogen bonds are indicated by yellow dashed lines. The calculated binding free energy (ΔG) was − 7.9 kcal/mol. C Co-IP analysis of the interaction between HMGB1 and ATG5 in bEnd.3 cells under OGD/R condition. Cell lysates were immunoprecipitated with anti-HMGB1 or anti-ATG5 antibodies, followed by immunoblotting with antibodies against ATG5 or HMGB1. IgG was used as a negative control. D Co-IP of HMGB1 and ATG5 in bEnd.3 cells under different conditions. Cell lysates from Control, OGD/R and OGD/R + Leptomycin B groups were immunoprecipitated with anti-HMGB1 antibody and blotted for ATG5 and HMGB1. IgG was used as a negative control
Techniques Used: Functional Assay, Binding Assay, Co-Immunoprecipitation Assay, Immunoprecipitation, Western Blot, Negative Control, Control
Figure Legend Snippet: Inhibition of ATG5 improves endothelial function and BBB function without affecting HMGB1 nucleocytoplasmic translocation. A Representative immunoblot images and B quantitation of nuclear HMGB1, cytoplasmic HMGB1, ATG5, LC3B II, LAMP2, occludin and ZO-1 expression in bEnd.3 cells from Control, OGD/R and OGD/R + ATG5 siRNA groups. Histone H3 and β-actin were used as the protein loading control. The images of western blotting data derived from triplicate blots conducted as three independent experiments. C Representative immunofluorescence images of HMGB1 localization in bEnd.3 cells from Control, OGD/R and OGD/R + ATG5 siRNA groups. HMGB1 (green), nuclei stained with DAPI (blue). Scale bar = 50 μm. D Quantification of nuclear and cytoplasmic HMGB1 signals. Nuclear HMGB1 was defined as HMGB1 signal overlapping with DAPI, and cytoplasmic HMGB1 as non-overlapping HMGB1 signal. E Representative images of tube formation assay and F quantitative analysis of total tube length. Scale bar = 100 μm. G Representative images of transwell migration assay and H quantitative analysis of migration cells. Scale bar = 100 μm. I Representative immunoblot images and J quantitation of nuclear HMGB1, cytoplasmic HMGB1, ATG5, LC3B II, LAMP2, occludin and ZO-1 expression in cerebral microvessels of mice from Sham, CA/CPR and CA/CPR + shATG5 groups at 24 h after ROSC. Histone H3 and β-actin were used as the protein loading control. The images of western blotting data derived from triplicate blots conducted as three independent experiments. K Representative immunofluorescence images of occludin and CD31 co-staining in brain sections at 24 h after ROSC and L Representative immunofluorescence images of ZO-1 and CD31 co-staining in brain sections at 24 h after ROSC and M quantification of occludin and CD31 merged area. Scale bars: main panel = 20 μm; zoom-in = 10 μm. N quantification of ZO-1 and CD31 merged area. Scale bars: main panel = 20 μm; zoom-in = 10 μm. O BBB permeability evaluated using EB at 24 h after ROSC. P Brain water content of mice at 24 h after ROSC
Techniques Used: Inhibition, Translocation Assay, Western Blot, Quantitation Assay, Expressing, Control, Derivative Assay, Immunofluorescence, Staining, Tube Formation Assay, Transwell Migration Assay, Migration, Permeability
Figure Legend Snippet: The protective effect of JS-K against OGD/R-induced endothelial injury depends on the HMGB1-ATG5-mediated autophagy pathway. A Representative immunoblot images and B quantitation of occludin, ZO-1, nuclear HMGB1 and cytoplasmic HMGB1 expression in bEnd.3 cells from Control, OGD/R, OGD/R + JS-K, OGD/R + ATG5 siRNA and OGD/R + JS-K + ATG5 siRNA groups. Histone H3 and β-actin were used as the protein loading control. C The cell viability was examined by CCK-8 assay. D The diffusion rates of FITC-dextran (40 kDa). E Representative fluorescence images of intracellular ROS levels detected by DCFH-DA staining in bEnd.3 cells and F quantification analysis of ROS fluorescence intensity normalized to the Control group. Scale bar = 200 μm. G Representative immunofluorescence images of ZO-1 and occludin in bEnd.3 cells and H quantification of fluorescence intensity for ZO-1 and occludin normalized to the Control group. Scale bar = 50 μm
Techniques Used: Western Blot, Quantitation Assay, Expressing, Control, CCK-8 Assay, Diffusion-based Assay, Fluorescence, Staining, Immunofluorescence

