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由于结构 DNA 的复制缺陷导致的表观遗传不稳定。

Epigenetic instability due to defective replication of structured DNA.

机构信息

Medical Research Council Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, UK.

出版信息

Mol Cell. 2010 Dec 10;40(5):703-13. doi: 10.1016/j.molcel.2010.11.009.

Abstract

The accurate propagation of histone marks during chromosomal replication is proposed to rely on the tight coupling of replication with the recycling of parental histones to the daughter strands. Here, we show in the avian cell line DT40 that REV1, a key regulator of DNA translesion synthesis at the replication fork, is required for the maintenance of repressive chromatin marks and gene silencing in the vicinity of DNA capable of forming G-quadruplex (G4) structures. We demonstrate a previously unappreciated requirement for REV1 in replication of G4 forming sequences and show that transplanting a G4 forming sequence into a silent locus leads to its derepression in REV1-deficient cells. Together, our observations support a model in which failure to maintain processive DNA replication at G4 DNA in REV1-deficient cells leads to uncoupling of DNA synthesis from histone recycling, resulting in localized loss of repressive chromatin through biased incorporation of newly synthesized histones.

摘要

组蛋白标记在染色体复制过程中的准确传递被认为依赖于复制与亲本组蛋白向子链的循环的紧密偶联。在这里,我们在禽类细胞系 DT40 中表明,REV1 是复制叉处 DNA 跨损伤合成的关键调节因子,对于维持附近具有形成 G-四链体 (G4) 结构能力的 DNA 的抑制性染色质标记和基因沉默是必需的。我们证明了 REV1 在 G4 形成序列复制中的以前未被认识到的需求,并表明将 G4 形成序列移植到沉默基因座会导致其在 REV1 缺陷细胞中去抑制。总之,我们的观察结果支持这样一种模型,即在 REV1 缺陷细胞中未能维持 G4 DNA 的连续 DNA 复制会导致 DNA 合成与组蛋白循环解耦,导致通过新合成的组蛋白的偏向掺入导致局部抑制性染色质丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b090/3145961/a2616dd3560c/fx1.jpg

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