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CCAR2 (基因名), Cell cycle and apoptosis regulator protein 2 (蛋白名), ccar2_human.
产品名称:

Human CCAR2/ Cell cycle and apoptosis regulator protein 2 CLIA Kit
细胞周期和凋亡调节蛋白2

货号:

U15473h

商标:
EIAab®
监管等级:
别名:

Cell division cycle and apoptosis regulator protein 2, DBIRD complex subunit KIAA1967, Deleted in breast cancer gene 1 protein, NET35, p30 DBC, DBC-1, DBC1, KIAA1967

检测方法:
CLIA
特异性:
Natural and recombinant human Cell cycle and apoptosis regulator protein 2
样品类型:
Serum, plasma, tissue homogenates, cell culture supernates and other biological fluids
样品数据:
研究领域:
Cancer
Human CCAR2 CLIA Kit
规格 & 价格: cart
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Human CCAR2 CLIA Kit
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通用注释


亚单元:
Component of the DBIRD complex. Interacts with ZNF326/ZIRD; the interaction is direct. Interacts (via N-terminus) with SIRT1, which inhibits the deacetylation of substrates. Interacts (via N-terminus) with SUV39H1; this interaction abolishes the interaction with SIRT1. Part of a complex composed at least of ASCL2, EMSY, HCFC1, HSPA8, CCAR2, MATR3, MKI67, RBBP5, TUBB2A, WDR5 and ZNF335; this complex may have a histone H3-specific methyltransferase activity. Interacts with NR1D1. Interacts (via N-terminus) with ESR1 and ESR2. Interacts (via N-terminus) with HDAC3 (via C-terminus). Interacts with HDAC1 and MED2F. Interacts with MCC. Interacts (via N-terminus) with NR1H2 and NR1H3 in a ligand-independent manner. Interacts with CSNK2A1. Interacts (via N-terminus) with p53/TP53. Interacts (via N-terminus) with BRCA1 (via the BRCT domains). Interacts (via N-terminus) with CHEK2 (via protein kinase domain). Interacts with PSEM3. Interacts (via N-terminus) with PSIA3 and SENP1. The sumoylated form shows a preferential interaction with SIRT1 as compared to its unmodified form.


功能:
Core component of the DBIRD complex, a multiprotein complex that acts at the interface between core mRNP particles and RNA polymerase II (RNAPII) and integrates transcript elongation with the regulation of alternative splicing: the DBIRD complex affects local transcript elongation rates and alternative splicing of a large set of exons embedded in (A + T)-rich DNA regions. Inhibits SIRT1 deacetylase activity leading to increasing levels of p53/TP53 acetylation and p53-mediated apoptosis. Inhibits SUV39H1 methyltransferase activity. As part of a histone H3-specific methyltransferase complex may mediate ligand-dependent transcriptional activation by nuclear hormone receptors. Plays a critical role in maintaining genomic stability and cellular integrity following UV-induced genotoxic stress. Regulates the circadian expression of the core clock components NR1D1 and ARNTL/BMAL1. Enhances the transcriptional repressor activity of NR1D1 through stabilization of NR1D1 protein levels by preventing its ubiquitination and subsequent degradation (PubMed:18235501, PubMed:18235502, PubMed:19131338, PubMed:19218236, PubMed:22446626, PubMed:23352644, PubMed:23398316). Represses the ligand-dependent transcriptional activation function of ESR2 (PubMed:20074560). Acts as a regulator of PCK1 expression and gluconeogenesis by a mechanism that involves, at least in part, both NR1D1 and SIRT1 (PubMed:24415752). Negatively regulates the deacetylase activity of HDAC3 and can alter its subcellular localization (PubMed:21030595). Positively regulates the beta-catenin pathway (canonical Wnt signaling pathway) and is required for MCC-mediated repression of the beta-catenin pathway (PubMed:24824780). Represses ligand-dependent transcriptional activation function of NR1H2 and NR1H3 and inhibits the interaction of SIRT1 with NR1H3 (PubMed:25661920). Plays an important role in tumor suppression through p53/TP53 regulation; stabilizes p53/TP53 by affecting its interaction with ubiquitin ligase MDM2 (PubMed:25732823). Represses the transcriptional activator activity of BRCA1 (PubMed:20160719). Inhibits SIRT1 in a CHEK2 and PSEM3-dependent manner and inhibits the activity of CHEK2 in vitro (PubMed:25361978).


亚细胞位置:
Nucleus Cytoplasm Recruited to chromatin, post-UV irradiation. Sequestered to the cytoplasm in the presence of MCC. Translocated to the cytoplasm during UV-induced apoptosis.


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