标签蛋白抗体
主要包括:常规标签抗体、直标标签抗体

GAPDH(HRP Conjugated)直标抗体

Catalog NO.:BE0034
Applications :WB
Reactivity :H, R, M, Mk, Dg, Ch, Hm, Rb, Pg, Sh

货号 规格 品牌 库存 价格 数量 操作
BE0034-10 10μl
BE0034-100 100μl

Glyceraldehyde 3 phosphate dehydrogenase (GAPDH) is well known as one of the key enzymes involved in glycolysis. GAPDH is constitutively expressed in almost all tissues at high levels, therefore antibodies against GAPDH are useful as loading controls for Western Blotting. Some physiological factors, such as hypoxia and diabetes, increase GAPDH expression in certain cell types.

Product Name: GAPDH(HRP Conjugated)直标抗体
Isotype: IgG1
Storage Buffer : PBS, pH 7.4, containing 0.02% kathon as Preservative and 50% Glycerol
Storage instructions: -20°C. Do not aliquot the antibody
Recommended dilutions: WB: 1:5,000-10,000 IHC: 1:200-500
Optimal dilutions should be determined by the end user.
Specificity: The GAPDH antibody can detects endogenous GAPDH protein.
Alternative Names: G3PD, G3PDH, GAPD, Glyceraldehyde 3 phosphoate dehycdrogenase, MGC102544
Form: Liquid
Reactivity: H, R, M, Mk, Dg, Ch, Hm, Rb, Pg, Sh

[1]Changes to gut amino acid transporters and microbiome associated with increased E/I ratio in Chd8+/− mouse model of ASD-like behavior.Yu, You, Zhang, Bing, Ji, Peifeng, Zuo, Zhenqiang, Huang, Yongxi, Wang, Ning, Liu, Chang, Liu, Shuang-Jiang, Zhao, Fangqing.Nature Communications.2022(3)

[2]Inhibition of CUB and sushi multiple domains 1 (CSMD1) expression by miRNA-190a-3p enhances hypertrophic scar-derived fibroblast migration in vitro.Gu, Shuchen, Huang, Xin, Xu, Xiangwen, Liu, Yunhan, Khoong, Yimin, Zhang, Zewei, Li, Haizhou, Gao, Yashan, Zan, Tao.BMC GENOMICS.2021(8)

[3]Ji, P., Wang, N., Yu, Y., Zhu, J., Zuo, Z., Zhang, B., & Zhao, F. (2025). Single-cell delineation of the microbiota-gut-brain axis: Probiotic intervention in Chd8 haploinsufficient mice. Cell genomics5(2), 100768. https://doi.org/10.1016/j.xgen.2025.100768

[4]Liu, P. P., Han, X., Li, X., Dai, S. K., Xu, Y. J., Jiao, L. F., Du, H. Z., Zhao, L. H., Li, R. F., Teng, Z. Q., Yang, Y. G., & Liu, C. M. (2025). An EED/PRC2-H19 Loop Regulates Cerebellar Development. Advanced science (Weinheim, Baden-Wurttemberg, Germany)12(1), e2403591. https://doi.org/10.1002/advs.202403591

[5]Gu, W., Zheng, H., & Canessa, C. M. (2023). Phosphatases maintain low catalytic activity of SGK1: DNA damage resets the balance in favor of phosphorylation. The Journal of biological chemistry299(8), 104941. https://doi.org/10.1016/j.jbc.2023.104941

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