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Mouse Anti-HSD11B1 Recombinant Antibody (CBMAB-1191-LY)

This product is antibody recognizes HSD11B1. The antibody immunoassay techniques such as: WB, ICC, IHC-P, IHC-F, ELISA.
See all HSD11B1 antibodies

Summary

Host Animal
Mouse
Specificity
Rat
Antibody Isotype
IgG
Application
WB, ICC, IHC-P, IHC-F, ELISA

Basic Information

Immunogen
HSD11B1
Specificity
Rat
Antibody Isotype
IgG
Application Notes
The COA includes recommended starting dilutions, optimal dilutions should be determined by the end user.

Formulations & Storage [For reference only, actual COA shall prevail!]

Format
Liquid
Buffer
0.02% NaN3, 50% glycerol
Concentration
0.5 mg/ml
Purity
> 95% Purity determined by SDS-PAGE.
Storage
Store at +4°C short term (1-2 weeks). Aliquot and store at -20°C long term. Avoid repeated freezethaw cycles.

Target

Full Name
Hydroxysteroid 11-Beta Dehydrogenase 1
Introduction
The protein encoded by this gene is a microsomal enzyme that catalyzes the conversion of the stress hormone cortisol to the inactive metabolite cortisone. In addition, the encoded protein can catalyze the reverse reaction, the conversion of cortisone to cortisol. Catalyzes reversibly the conversion of cortisol to the inactive metabolite cortisone. Catalyzes reversibly the conversion of 7-ketocholesterol to 7-beta-hydroxycholesterol. In intact cells, the reaction runs only in one direction, from 7-ketocholesterol to 7-beta-hydroxycholesterol.
Entrez Gene ID
UniProt ID
Alternative Names
HDL; 11-DH; HSD11; HSD11B; HSD11L; CORTRD2; SDR26C1; 11-beta-HSD1
Function
Controls the reversible conversion of biologically active glucocorticoids such as cortisone to cortisol, and 11-dehydrocorticosterone to corticosterone in the presence of NADP(H) (PubMed:10497248, PubMed:12460758, PubMed:14973125, PubMed:15152005, PubMed:15280030, PubMed:17593962, PubMed:21453287, PubMed:27927697, PubMed:30902677).

Participates in the corticosteroid receptor-mediated anti-inflammatory response, as well as metabolic and homeostatic processes (PubMed:12414862, PubMed:10497248, PubMed:15152005, PubMed:21453287).

Plays a role in the secretion of aqueous humor in the eye, maintaining a normotensive, intraocular environment (PubMed:11481269).

Bidirectional in vitro, predominantly functions as a reductase in vivo, thereby increasing the concentration of active glucocorticoids (PubMed:12414862, PubMed:10497248, PubMed:11481269, PubMed:12460758).

It has broad substrate specificity, besides glucocorticoids, it accepts other steroid and sterol substrates (PubMed:15095019, PubMed:15152005, PubMed:17593962, PubMed:21453287).

Interconverts 7-oxo- and 7-hydroxy-neurosteroids such as 7-oxopregnenolone and 7beta-hydroxypregnenolone, 7-oxodehydroepiandrosterone (3beta-hydroxy-5-androstene-7,17-dione) and 7beta-hydroxydehydroepiandrosterone (3beta,7beta-dihydroxyandrost-5-en-17-one), among others (PubMed:17593962).

Catalyzes the stereo-specific conversion of the major dietary oxysterol, 7-ketocholesterol (7-oxocholesterol), into the more polar 7-beta-hydroxycholesterol metabolite (PubMed:15095019, PubMed:15152005).

7-oxocholesterol is one of the most important oxysterols, it participates in several events such as induction of apoptosis, accumulation in atherosclerotic lesions, lipid peroxidation, and induction of foam cell formation (PubMed:15095019).

Mediates the 7-oxo reduction of 7-oxolithocholate mainly to chenodeoxycholate, and to a lesser extent to ursodeoxycholate, both in its free form and when conjugated to glycine or taurine, providing a link between glucocorticoid activation and bile acid metabolism (PubMed:21453287).

Catalyzes the synthesis of 7-beta-25-dihydroxycholesterol from 7-oxo-25-hydroxycholesterol in vitro, which acts as ligand for the G-protein-coupled receptor (GPCR) Epstein-Barr virus-induced gene 2 (EBI2) and may thereby regulate immune cell migration (PubMed:30902677).
Biological Process
Lung development Source: Ensembl
Steroid catabolic process Source: GO_Central
Cellular Location
Endoplasmic reticulum membrane
Involvement in disease
Cortisone reductase deficiency 2 (CORTRD2):
An autosomal dominant error of cortisone metabolism characterized by a failure to regenerate cortisol from cortisone, resulting in increased cortisol clearance, activation of the hypothalamic- pituitary axis and ACTH-mediated adrenal androgen excess. Clinical features include hyperandrogenism resulting in hirsutism, oligo- amenorrhea, and infertility in females and premature pseudopuberty in males.
Topology
Cytoplasmic: 1-7
Helical: 8-24
Lumenal: 25-292
PTM
Glycosylated.

Tavares Pereira, M., Schuler, G., Aslan, S., Payan-Carreira, R., Reichler, I. M., Reynaud, K., & Kowalewski, M. P. (2023). Utero-placental expression and functional implications of HSD11B1 and HSD11B2 in canine pregnancy. Biology of Reproduction, 108(4), 645-658.

Liu, K., Zhang, L., Li, X., & Zhao, J. (2022). High expression of lncRNA HSD11B1‑AS1 indicates favorable prognosis and is associated with immune infiltration in cutaneous melanoma. Oncology Letters, 23(2), 1-14.

Okabe, M., Takarada, S., Miyao, N., Nakaoka, H., Ibuki, K., Ozawa, S., ... & Hirono, K. (2022). G0S2 regulates innate immunity in Kawasaki disease via lncRNA HSD11B1-AS1. Pediatric Research, 92(2), 378-387.

Kragl, A., Schoon, J., Tzvetkova, A., Wenzel, C., Blaschke, M., Böcker, W., ... & Tzvetkov, M. V. (2022). Effects of HSD11B1 knockout and overexpression on local cortisol production and differentiation of mesenchymal stem cells. Frontiers in Bioengineering and Biotechnology, 10, 953034.

Han, D., Yu, Z., Zhang, H., Liu, H., Wang, B., & Qian, D. (2021). Microenvironment-associated gene HSD11B1 may serve as a prognostic biomarker in clear cell renal cell carcinoma: a study based on TCGA, RT‑qPCR, Western blotting, and immunohistochemistry. Bioengineered, 12(2), 10891-10904.

Mori, R. C., Santos‐Bezerra, D. P., Pelaes, T. S., Admoni, S. N., Perez, R. V., Monteiro, M. B., ... & Correa‐Giannella, M. L. (2021). Variants in HSD11B1 gene modulate susceptibility to diabetes kidney disease and to insulin resistance in type 1 diabetes. Diabetes/Metabolism Research and Reviews, 37(1), e3352.

Doi, M., Oka, Y., Taniguchi, M., & Sato, M. (2021). Transient expansion of the expression region of Hsd11b1, encoding 11β‐hydroxysteroid dehydrogenase type 1, in the developing mouse neocortex. Journal of Neurochemistry, 159(4), 778-788.

Huang, P., Li, Y., Xu, C., Melino, G., Shao, C., & Shi, Y. (2020). HSD11B1 is upregulated synergistically by IFNγ and TNFα and mediates TSG-6 expression in human UC-MSCs. Cell death discovery, 6(1), 24.

Chedid, M. F., do Nascimento, F. V., de Oliveira, F. S., de Souza, B. M., Kruel, C. R., Gurski, R. R., ... & Gerchman, F. (2019). Interaction of HSD11B1 and H6PD polymorphisms in subjects with type 2 diabetes are protective factors against obesity: a cross-sectional study. Diabetology & Metabolic Syndrome, 11, 1-10.

Devang, N., Satyamoorthy, K., Rai, P. S., Nandini, M., Basu, A., & Adhikari, P. (2018). Association of HSD11B1 rs12086634 and HSD11B1 rs846910 gene polymorphisms with polycystic ovary syndrome in South Indian women. International Journal of Diabetes in Developing Countries, 38, 381-386.

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

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