TTBK1 Antibody Blocking Peptide(bs-20200P)-500ug

TTBK1 Antibody Blocking Peptid

e(bs-20200P)-500ug
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  • ¥880
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  • bs-20200P
  • 2025年10月16日
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      500ug

    产品编号bs-20200P
    英文名称TTBK1 Antibody Blocking Peptide
    中文名称脑源性tau蛋白激酶封闭多肽
    英文别名BDTK; Brain derived tau kinase; Brain-derived tau kinase; KIAA1855; Tau tubulin kinase 1; Tau-tubulin kinase 1; TTBK1; TTBK1_HUMAN.
    纯化方法HPLC
    研究领域

    Cancer > Signal transduction > Protein phosphorylation > Serine/threonine kinases

    Neuroscience > Neurology process > Neurodegenerative disease > Alzheimer's disease > Tangles & Tau

    Signal Transduction > Cytoskeleton / ECM > Cytoskeleton > Microtubules > MT Associated Proteins > Tau

    亚细胞定位Cytoplasm.
    组织特异性Expressed in the brain, particularly in cortical and hippocampal neurons. Weakly expressed in spinal cord and testis. No expression in adipose tissue, bladder, cervix, colon, esophagus, heart, kidney, liver, lung, ovary, placenta, prostate, skeletal muscle, small intestine, spleen, testis, thymus, thyroid or trachea.
    相似性Belongs to the protein kinase superfamily. CK1 Ser/Thr protein kinase family.
    Contains 1 protein kinase domain.
    功能Serine/threonine kinase which is able to phosphorylate TAU on serine, threonine and tyrosine residues. Induces aggregation of TAU.
    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TTBK1 (tau tubulin kinase 1), also known as BDTK (brain-derived tau kinase), is a 1,321 amino acid protein that contains one protein kinase domain and belongs to the serine/threonine protein kinase family. Localized to the cytoplasm and expressed at high levels in brain and at lower levels in testis and spinal cord, TTBK1 functions as a serine/threonine kinase that can phosphorylate Tau (a protein involved in tubulin polymerization) on threonine, tyrosine and serine residues. Specifically, TTBK1 uses divalent cations, such as magnesium and manganese, to catalyze the ATP-dependent transfer of a phosphate group onto Tau, creating a phosphoprotein and ADP. Phosphorylation of Tau causes its aggregation and subsequent loss of function, suggesting an important role for TTBK1 in the control of tubulin dynamics. Two isoforms of TTBK1 are expressed due to alternative splicing events.

     

     

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