Technical Support: menoci@medizin.uni-goettingen.de
Department of Medical Informatics
University Medical Center Göttingen
Imprint
PID | primary-0797 |
EPIC PID | https://hdl.handle.net/21.11124/primary-0797 |
Research group | RG Zimmermann |
Quality (mean) | no score (0.00) |
Sharing level | Public |
Antigen symbol | GAPDH |
Antibody Registry ID(s) | AB_2107436 |
Name | GAPDH Monoclonal antibody |
Alternative name | |
Lab ID | |
Tag / Fluorophore | |
Raised in | Mouse |
Reacts with | human, mouse, rat, yeast, plant, zebrafish |
Clone | |
Isotype | IgG2b |
Clonality | monoclonal |
Demasking | unknown |
Antigen | GAPDH fusion protein Ag0766 |
Crafted By | company |
Company / Manufacturer | Proteintech |
Catalog no. | 60004-1-Ig |
Lot no. | |
Description | CRC1565: primary-0133 Western Blot (WB) WB : 1:20000-1:100000 Immunoprecipitation (IP) IP : 0.5-4.0 ug for IP and 1:2000-1:12000 for WB Immunofluorescence (IF) IF : 1:200-1:2000 |
Localization | |
Storage instruction | Store at -20°C. Stable for one year after shipment. Aliquoting is unnecessary for -20°C storage. |
Receipt date | 2021-10-01 00:00:00 |
Preparation date | 2021-10-18 00:00:00 |
Created by | Klauenberg, Vanessa |
Last modified | , |
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Establishment of two homozygous CRISPR interference (CRISPRi) knock-in human induced pluripotent stem cell (hiPSC) lines for titratable endogenous gene repression
Schoger E, Zimmermann W, Cyganek L, Zelarayán LC
Stem Cell Res 2021 : 10.1016/j.scr.2021.102473
Establishment of a second generation homozygous CRISPRa human induced pluripotent stem cell (hiPSC) line for enhanced levels of endogenous gene activation
Schoger E, Zimmermann W, Cyganek L, Zelarayán LC
Stem Cell Res 2021 : 10.1016/j.scr.2021.102518
N 2-methylguanosine modifications on human tRNAs and snRNA U6 are important for cell proliferation, protein translation and pre-mRNA splicing
Wang C, Ulryck N, Herzel L, Pythoud N, Kleiber N, Guérineau V, Jactel V, Moritz C, Bohnsack M, Carapito C, Touboul D, Bohnsack K, Graille M
Nucleic Acids Res 2023 : 10.1093/nar/gkad487
SarcAsM: AI-based multiscale analysis of sarcomere organization and contractility in cardiomyocytes
Härtter D, Hauke L, Driehorst T, Long Y, Bao G, Primeßnig A, Berečić B, Cyganek L, Tiburcy M, Schmidt CF, Zimmermann W
bioRxiv 2025 : 10.1101/2025.04.29.650605