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Functional Subdomain in the Ankyrin Domain of Tankyrase 1 Required for Poly(ADP-Ribosyl)ation of TRF1 and Telomere Elongation

机译:Tankyrase 1锚蛋白结构域中的功能性子结构域是TRF1的聚(ADP-核糖基)化和端粒延伸所需的

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摘要

In human cells, telomere elongation by telomerase is repressed in cis by the telomeric protein TRF1. Tankyrase 1 binds TRF1 via its ankyrin domain and poly(ADP-ribosyl)ates it. Overexpression of tankyrase 1 in telomerase-positive cells releases TRF1 from telomeres, resulting in telomere elongation. The tankyrase 1 ankyrin domain is classified into five conserved subdomains, ARCs (ankyrin repeat clusters) I to V. Here, we investigated the biological significance of the ARCs. First, each ARC worked as an independent binding site for TRF1. Second, ARCs II to V recognized the N-terminal acidic domain of TRF1 whereas ARC I bound a discrete site between the homodimerization and the Myb-like domains of TRF1. Inactivation of TRF1 binding in the C-terminal ARC, ARC V, either by deletion or point mutation, significantly reduced the ability of tankyrase 1 to poly(ADP-ribosyl)ate TRF1, release TRF1 from telomeres, and elongate telomeres. In contrast, other ARCs, ARC II and/or IV, inactivated by point mutations still retained the biological function of tankyrase 1. On the other hand, ARC V per se was not sufficient for telomere elongation, suggesting a structural role for multiple ARCs. This work provides evidence that specific ARC-TRF1 interactions play roles in the essential catalytic function of tankyrase 1.
机译:在人类细胞中,端粒蛋白TRF1抑制了端粒酶在端粒中的延伸。 Tankyrase 1通过其锚蛋白结构域结合TRF1,并使其聚(ADP-核糖基)。端粒酶阳性细胞中tankyrase 1的过表达从端粒释放TRF1,导致端粒伸长。端锚聚合酶1锚蛋白结构域被分为五个保守的亚结构域,ARC(锚蛋白重复簇)I至V。在这里,我们研究了ARC的生物学意义。首先,每个ARC作为TRF1的独立绑定站点。其次,ARC II至V识别TRF1的N末端酸性结构域,而ARC I结合TRF1的同型二聚化和Myb样结构域之间的离散位点。通过缺失或点突变使C末端ARC,ARC V中TRF1结合失活,显着降低了tankyrase 1对聚(ADP-核糖基)酸酯TRF1,从端粒释放TRF1和延长端粒的能力。相反,其他由点突变灭活的ARC II和/或IV仍然保留了tankyrase 1的生物学功能。另一方面,ARC V本身不足以延长端粒,提示多个ARC具有结构性作用。这项工作提供了证据,表明特定的ARC-TRF1相互作用在tankyrase 1的基本催化功能中起作用。

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