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BAG1 Matched Antibody Pair (123) (APMAB-123LY)

This antibody pair set can be used for detecting and quantifying protein level of human BAG1.
See all BAG1 antibodies

Specifications

ApplIcation
Sandwich ELISA
Specificity
Human
Capture Antibody
Mouse anti-BAG1 monoclonal, IgG2a antibody, 100 ug
Detection Antibody
Anti-BAG1 Rabbit polyclonal antibody, 50 ug
Dilutions
10 ng/ml-100 ng/ml
Format
Liquid
Storage
Aliquot and store at -20°Cor -80°C. Avoid freeze-thaw cycles.
Introduction
The oncogene BCL2 is a membrane protein that blocks a step in a pathway leading to apoptosis or programmed cell death. The protein encoded by this gene binds to BCL2 and is referred to as BCL2-associated athanogene. It enhances the anti-apoptotic effects of BCL2 and represents a link between growth factor receptors and anti-apoptotic mechanisms. Multiple protein isoforms are encoded by this mRNA through the use of a non-AUG (CUG) initiation codon, and three alternative downstream AUG initiation codons. A related pseudogene has been defined on chromosome X. [provided by RefSeq, Feb 2010]
Alternative Names
BCL2 Associated Athanogene 1; BAG-1; HAP; Glucocortoid Receptor-Associated Protein RAP46; BAG Family Molecular Chaperone Regulator 1; Bcl-2 Associating Athanogene-1 Protein; Receptor-Associated Protein, 46-KD;
Entrez Gene ID
UniProt ID

Turk, M., Tatli, O., Alkan, H. F., Ozfiliz Kilbas, P., Alkurt, G., & Dinler Doganay, G. (2021). Co-Chaperone Bag-1 Plays a Role in the Autophagy-Dependent Cell Survival through Beclin 1 Interaction. Molecules, 26(4), 854.

Can, N. D., Basturk, E., Kizilboga, T., Akcay, I. M., Dingiloglu, B., Tatli, O., ... & Dinler Doganay, G. (2021). Interactome analysis of Bag-1 isoforms reveals novel interaction partners in endoplasmic reticulum-associated degradation. PloS one, 16(8), e0256640.

Luo, S., Hou, Y., Zhang, Y., Feng, L., Hunter, R. G., Yuan, P., ... & Du, J. (2021). Bag‐1 mediates glucocorticoid receptor trafficking to mitochondria after corticosterone stimulation: Potential role in regulating affective resilience. Journal of Neurochemistry, 158(2), 358-372.

Nguyen, P., Hess, K., Smulders, L., Le, D., Briseno, C., Chavez, C. M., & Nikolaidis, N. (2020). Origin and evolution of the human Bcl2-associated athanogene-1 (BAG-1). International journal of molecular sciences, 21(24), 9701.

Song, Y. K., Li, Z., Wang, Y., Qu, Y., Li, Q. S., Man, X. Y., ... & Hu, D. (2020). Inhibition of BAG‐1 induced SH‐SY5Y cell apoptosis without affecting Hsp70 expression. Journal of cellular biochemistry, 121(2), 1728-1735.

Kirschke, E., Roe-Zurz, Z., Noddings, C., & Agard, D. (2020). The interplay between Bag-1, Hsp70, and Hsp90 reveals that inhibiting Hsp70 rebinding is essential for Glucocorticoid Receptor activity. bioRxiv.

Papadakis, E. S., Reeves, T., Robson, N. H., Maishman, T., Packham, G., & Cutress, R. I. (2017). BAG-1 as a biomarker in early breast cancer prognosis: a systematic review with meta-analyses. British journal of cancer, 116(12), 1585-1594.

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For research use only. Not intended for any clinical use.

Custom Antibody Labeling

We also offer labeled antibodies developed using our catalog antibody products and nonfluorescent conjugates (HRP, AP, Biotin, etc.) or fluorescent conjugates (Alexa Fluor, FITC, TRITC, Rhodamine, Texas Red, R-PE, APC, Qdot Probes, Pacific Dyes, etc.).

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