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CTG/CAG重复序列的不稳定性受人类DNA连接酶I水平及其与增殖细胞核抗原相互作用的调节:复制与滑链DNA修复之间的区别。

CTG/CAG repeat instability is modulated by the levels of human DNA ligase I and its interaction with proliferating cell nuclear antigen: a distinction between replication and slipped-DNA repair.

作者信息

López Castel Arturo, Tomkinson Alan E, Pearson Christopher E

机构信息

Program of Genetics and Genome Biology, The Hospital for Sick Children, Toronto, Ontario M5G 1L7, Canada.

出版信息

J Biol Chem. 2009 Sep 25;284(39):26631-45. doi: 10.1074/jbc.M109.034405. Epub 2009 Jul 22.

Abstract

Mechanisms contributing to disease-associated trinucleotide repeat instability are poorly understood. DNA ligation is an essential step common to replication and repair, both potential sources of repeat instability. Using derivatives of DNA ligase I (hLigI)-deficient human cells (46BR.1G1), we assessed the effect of hLigI activity, overexpression, and its interaction with proliferating cell nuclear antigen (PCNA) upon the ability to replicate and repair trinucleotide repeats. Compared with LigI(+/+), replication progression through repeats was poor, and repair tracts were broadened beyond the slipped-repeat for all mutant extracts. Increased repeat instability was linked only to hLigI overexpression and expression of a mutant hLigI incapable of interacting with PCNA. The endogenous mutant version of hLigI with reduced ligation activity did not alter instability. We distinguished the DNA processes through which hLigI contributes to trinucleotide instability. The highest levels of repeat instability were observed under the hLigI overexpression and were linked to reduced slipped-DNAs repair efficiencies. Therefore, the replication-mediated instability can partly be attributed to errors during replication but also to the poor repair of slipped-DNAs formed during this process. However, repair efficiencies were unaffected by expression of a PCNA interaction mutant of hLigI, limiting this instability to the replication process. The addition of purified proteins suggests that disruption of LigI and PCNA interactions influences trinucleotide repeat instability. The variable levels of age- and tissue-specific trinucleotide repeat instability observed in myotonic dystrophy patients and transgenic mice may be influenced by varying steady state levels of DNA ligase I in these tissues and during different developmental windows.

摘要

导致疾病相关三核苷酸重复序列不稳定的机制目前还知之甚少。DNA连接是复制和修复过程中的一个关键步骤,而这两者都是重复序列不稳定的潜在来源。我们使用DNA连接酶I(hLigI)缺陷的人类细胞(46BR.1G1)的衍生物,评估了hLigI活性、过表达及其与增殖细胞核抗原(PCNA)的相互作用对三核苷酸重复序列复制和修复能力的影响。与LigI(+/+)相比,所有突变提取物通过重复序列的复制进程都很差,修复片段也扩展到了滑链重复序列之外。重复序列不稳定性的增加仅与hLigI的过表达以及无法与PCNA相互作用的突变型hLigI的表达有关。内源性连接活性降低的hLigI突变体版本并未改变不稳定性。我们区分了hLigI导致三核苷酸不稳定性的DNA过程。在hLigI过表达的情况下观察到了最高水平的重复序列不稳定性,并且这与滑链DNA修复效率降低有关。因此,复制介导的不稳定性部分可归因于复制过程中的错误,但也与该过程中形成的滑链DNA修复不佳有关。然而,hLigI的PCNA相互作用突变体的表达并未影响修复效率,这将这种不稳定性限制在了复制过程中。添加纯化蛋白表明,LigI和PCNA相互作用的破坏会影响三核苷酸重复序列的不稳定性。在强直性肌营养不良患者和转基因小鼠中观察到的年龄和组织特异性三核苷酸重复序列不稳定性的不同水平,可能受到这些组织以及不同发育阶段中DNA连接酶I稳态水平变化的影响。

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