Anti-Vitamin D Receptor Rabbit Monoclonal Antibody(BM5055-100ul)

Anti-Vitamin D Receptor Rabbit

Monoclonal Antibody(BM5055-100ul)
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  • ¥1960
  • BOSTER已认证
  • BM5055-100ul
  • 中国
  • 2025年07月15日
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    • 详细信息
    • 技术资料
    • 库存

      大量

    • 供应商

      广州威佳科技有限公司

    • 规格

      100ul

    产品概况

    货号 BM5055
    产品名称 Anti-VDR Antibody
    基因名 VDR
    抗体来源 Rabbit
    克隆 Monoclonal
    抗体亚型 Rabbit
    分子量 48KD
    免疫原 A synthesized peptide derived from human Vitamin D Receptor
    内容 500 ug/ml;Rabbit IgG in phosphate buffered saline, pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol.
    纯化方式 Affinity-chromatography
    浓度 500 ug/ml
    产品形态 Liquid
    保存条件 12 months from date of receipt,-20℃ as supplied. 6 months 2 to 8℃ after reconstitution. Avoid repeated freezing and thawing.
    背景资料 VDR(Vitamin D Receptor), also known as Vitamin D Hormone Receptor, is a member of the nuclear receptor family of transcription factors. Labuda et al.(1991) assigned the VDR gene to 12q12-q14 by in situ hybridization. Using mutation analysis, Jurutka et al.(2000) characterized arg18/arg22, VDR residues immediately N-terminal of the first DNA-binding zinc finger, as vital for contact with the general transcription factor IIB(TFIIB). A natural polymorphic variant of VDR, termed F/M4(missing a FokI restriction site), which lacks only the first 3 amino acids(including glu2), interacted more efficiently with TFIIB and also possessed elevated transcriptional activity compared with the full-length(f/M1) receptor. Shah et al.(2006) stated that the signaling and oncogenic activity of beta-catenin(CTNNB1) can be repressed by activation of VDR. Conversely, high levels of beta-catenin can potentiate the transcriptional activity of 1,25-dihydroxyvitamin D3.
    研究类别 1. Jurutka, P. W., Remus, L. S., Whitfield, G. K., Thompson, P. D., Hsieh, J.-C., Zitzer, H., Tavakkoli, P., Galligan, M. A., Dang, H. T. L., Haussler, C. A., Haussler, M. R. The polymorphic N terminus in human vitamin D receptor isoforms influences transcriptional activity by modulating interaction with transcription factor IIB. Molec. Endocr. 14: 401-420, 2000. 2. Labuda, M., Ross, M. V., Fujiwara, T. M., Morgan, K., Ledbetter, D., Hughes, M. R., Glorieux, F. H. Two hereditary defects related to vitamin D metabolism map to the same region of human chromosome 12q.II(Abstract) Cytogenet. Cell Genet. 58: 1978, 1991.3. Shah, S., Islam, M. N., Dakshanamurthy, S., Rizvi, I., Rao, M., Herrell, R., Zinser, G., Valrance, M., Aranda, A., Moras, D., Norman, A., Welsh, J., Byers, S. W. The molecular basis of vitamin D receptor and beta-catenin crossregulation. Molec. Cell 21: 799-809, 2006. Note: Erratum: Molec. Cell 21: 148 only, 2006.
    Uniprot ID VDR: P11473

    产品图片描述

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    [list_product_images]Western blot analysis of Vitamin D expression in (1) HeLa cell lysate; (2) Mouse kidney lysate.[/list_product_images]

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