首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Extrahelical (CAG)/(CTG) triplet repeat elements support proliferating cell nuclear antigen loading and MutLα endonuclease activation
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Extrahelical (CAG)/(CTG) triplet repeat elements support proliferating cell nuclear antigen loading and MutLα endonuclease activation

机译:螺旋外(CAG)/(CTG)三联体重复元件支持增殖的细胞核抗原负载和MutLα核酸内切酶激活

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摘要

MutLα endonuclease can be activated on covalently continuous DNA that contains a MutSα- or MutSβ-recognizable lesion and a helix perturbation that supports proliferating cell nuclear antigen (PCNA) loading by replication factor C, providing a potential mechanism for triggering mismatch repair on nonreplicating DNA. Because mouse models for somatic expansion of disease-associated (CAG)n/(CTG)n triplet repeat sequences have implicated both MutSβ and MutLα and have suggested that expansions can occur in the absence of replication, we have asked whether an extrahelical (CAG)n or (CTG)n element is sufficient to trigger MutLα activation. (CAG)n and (CTG)n extrusions in relaxed closed circular DNA do in fact support MutSβ-, replication factor C-, and PCNA-dependent activation of MutLα endonuclease, which can incise either DNA strand. Extrahelical elements of two or three repeat units are the preferred substrates for MutLα activation, and extrusions of this size also serve as moderately effective sites for loading the PCNA clamp. Relaxed heteroduplex DNA containing a two or three-repeat unit extrusion also triggers MutSβ- and MutLα-endonuclease-dependent mismatch repair in nuclear extracts of human cells. This reaction occurs without obvious strand bias at about 10% the rate of that observed with otherwise identical nicked heteroduplex DNA. These findings provide a mechanism for initiation of triplet repeat processing in nonreplicating DNA that is consistent with several features of the model of Gomes-Pereira et al. [Gomes-Pereira M, Fortune MT, Ingram L, McAbney JP, Monckton DG (2004) Hum Mol Genet 13(16):1815–1825]. They may also have implications for triplet repeat processing at a replication fork.
机译:MutLα核酸内切酶可以在包含MutSα或MutSβ可识别的病变和螺旋扰动的共价连续DNA上激活,该螺旋扰动通过复制因子C支持增殖的细胞核抗原(PCNA)负载,从而提供了触发非复制DNA错配修复的潜在机制。由于用于疾病相关(CAG)n /(CTG)n三联体重复序列的体细胞扩张的小鼠模型已经涉及MutSβ和MutLα,并且暗示了在没有复制的情况下可以发生扩张,因此我们询问是否存在螺旋外(CAG) n或(CTG)n元素足以触发MutLα激活。实际上,在松弛的闭合环状DNA中的(CAG)n和(CTG)n挤出确实支持MutSβ-,复制因子C-和PCNA依赖性的MutLα内切核酸酶活化,从而可以切割两条DNA链。两个或三个重复单元的螺旋外元件是MutLα激活的首选底物,此大小的挤出物也可用作装载PCNA钳的中等有效位点。包含两个或三个重复单元挤出的松弛异源双链DNA也触发了人类细胞核提取物中的MutSβ-和MutLα-核酸内切酶依赖性错配修复。该反应在没有明显的链偏向的情况下发生,其速率大约是用相同切口的异源双链DNA观察到的速率的10%。这些发现提供了在非复制DNA中引发三联体重复加工的机制,该机制与Gomes-Pereira等人模型的几个特征是一致的。 [Gomes-Pereira M,Fortune MT,Ingram L,McAbney JP,Monckton DG(2004)Hum Mol Genet 13(16):1815-1825]。它们可能还会影响复制叉处的三元组重复处理。

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