KLF6 Antibody Blocking Peptide(bs-1395P)-500ug

KLF6 Antibody Blocking Peptide

(bs-1395P)-500ug
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  • ¥880
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  • bs-1395P
  • 2025年10月16日
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      500ug

    产品编号bs-1395P
    英文名称KLF6 Antibody Blocking Peptide
    中文名称转染抑癌基因KLF6封闭多肽
    英文别名Kruppel-like factor 6; B cell derived protein 1; BCD1; COPEB; Core promoter element-binding protein; CPBP; GC rich sites binding factor GBF; Krueppel-like factor 6; Proto-oncogene BCD1; Transcription factor Zf9; Zf9; CBA1; DKFZp686N0199; GBF; PAC1; ST12; KLF6_HUMAN.
    纯化方法HPLC
    研究领域

    Epigenetics and Nuclear Signaling > Transcription > Domain Families > Developmental Families

    Epigenetics and Nuclear Signaling > Transcription > Domain Families > Krueppel like factor

    Epigenetics and Nuclear Signaling > Transcription > Domain Families > Zinc Finger

    Epigenetics and Nuclear Signaling > Transcription > Krueppel like factor

    Stem Cells > Hematopoietic Progenitors > Intracellular Molecules

    亚细胞定位Nucleus.
    组织特异性Highly expressed in placenta followed by spleen, thymus, prostate, testis, small intestine and colon. Weakly expressed in pancreas, lung, liver, heart and skeletal muscle. Also expressed in fetal brain, spleen and thymus.
    相似性Belongs to the krueppel C2H2-type zinc-finger protein family.
    Contains 3 C2H2-type zinc fingers.
    功能Transcriptional activator (By similarity). Binds a GC box motif. Could play a role in B-cell growth and development.
    保存条件Shipped at 4℃. Stored at -20℃ for one year. Avoid repeated freeze/thaw cycles.
    注意事项This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
    背景资料KLF6 is a nuclear protein that has three zinc fingers at the end of its C-terminal domain, a serine/threonine-rich central region, and an acidic domain lying within the N-terminal region. The zinc fingers of this protein are responsible for the specific DNA binding with the guanine-rich core promoter elements. The central region might be involved in activation or posttranslational regulatory pathways, and the acidic N-terminal domain might play an important role in the process of transcriptional activation. It is capable of activating transcription approximately 4-fold either on homologous or heterologous promoters. The DNA binding and transcriptional activity of this protein, in conjunction with its expression pattern, suggests that this protein may participate in the regulation and/or maintenance of the basal expression of pregnancy-specific glycoprotein genes and possibly other TATA box-less genes. Two transcript variants encoding the same protein have been found for this gene.

     

     

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