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Nuclear APC

机译:核APC

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摘要

Mutational inactivation of the tumor suppressor gene APC (Adenomatous polyposis coli) is thought to be an initiating step in the progression of the vast majority of colorectal cancers. Attempts to understand AP C function have revealed more than a dozen binding partners as well as several subcellular localizations including at cell-cell junctions, associated with microtubules at the leading edge of migrating cells, at the apical membrane, in the cytoplasm and in the nucleus. The present chapter focuses on APC localization and functions in the nucleus. APC contains two classical nuclear localization signals, with a third domain that can enhance nuclear import. Along with two sets of nuclear export signals, the nuclear localization signals enable the large APC protein to shuttle between the nucleus and cytoplasm. Nuclear APC can oppose P-catenin-mediated transcription. This down-regulation of nuclear |3-catenin activity by APC most likely involves nuclear sequestration of P-catenin from the transcription complex as well as interaction of APC with transcription corepressor CtBP. Additional nuclear binding partners for APC include transcription factor activator protein AP-2alpha, nuclear export factor Crm1, protein tyrosine phosphatase PTP-BL and perhaps DNA itself. Interaction of APC with polymerase beta and PCNA, suggests a role for APC in DNA repair. The observation that increases in the cyto-plasmic distribution of APC correlate with colon cancer progression suggests that disruption of these nuclear functions of APC plays an important role in cancer progression. APC prevalence in the cytoplasm of quiescent cells points to a potential function for nuclear APC in control of cell proliferation. Clear definition of APC s nuclear function(s) will expand the possibilities for early colorectal cancer diagnostics and therapeutics targeted to APC.
机译:肿瘤抑制基因APC(腺瘤性息肉组织Coli)的突变失活被认为是绝大大多数结肠直肠癌的进展中的起始步骤。理解AP C功能的尝试揭示了十多个结合伙伴以及包括在细胞 - 细胞结中的几个亚细胞本地化,与微管相关联,在迁移细胞的前缘,在细胞质和细胞核中。本章侧重于核心的APC本地化和功能。 APC包含两个古典核定位信号,其中第三领域可以增强核导入。随着两套核导出信号,核定位信号使大型APC蛋白能够在细胞核和细胞质之间穿梭。核APC可以反对p-catenin介导的转录。通过APC的这种核素活性的这种下调最有可能涉及从转录复合物中核封存P-Catenin以及APC与转录内容压缩机CTBP的相互作用。用于APC的额外核结合伴侣包括转录因子活化剂蛋白AP-2α,核出口因子CRM1,蛋白酪氨酸磷酸酶PTP-BL,也许是DNA本身。 APC与聚合酶β和PCNA的相互作用表明APC在DNA修复中的作用。 APC的细胞素分布增加与结肠癌进展的观察结果表明,APC的这些核职能的破坏在癌症进展中起重要作用。静态细胞的细胞质中的APC流行率指向核APC控制细胞增殖的潜在功能。明确的APC S核功能定义将扩大针对APC的早期结肠直肠癌诊断和治疗方法的可能性。

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