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首页> 外文期刊>Nucleic Acids Research >FANCJ coordinates two pathways that maintain epigenetic stability at G-quadruplex DNA.
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FANCJ coordinates two pathways that maintain epigenetic stability at G-quadruplex DNA.

机译:FANCJ协调了两条途径,这些途径可维持G-四链体DNA的表观遗传稳定性。

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摘要

We have previously reported that DT40 cells deficient in the Y-family polymerase REV1 are defective in replicating G-quadruplex DNA. In vivo this leads to uncoupling of DNA synthesis from redeposition of histones displaced ahead of the replication fork, which in turn leads to loss of transcriptional repression due to failure to recycle pre-existing repressive histone post-translational modifications. Here we report that a similar process can also affect transcriptionally active genes, leading to their deactivation. We use this finding to develop an assay based on loss of expression of a cell surface marker to monitor epigenetic instability at the level of single cells. This assay allows us to demonstrate G4 DNA motif-associated epigenetic instability in mutants of three helicases previously implicated in the unwinding of G-quadruplex structures, FANCJ, WRN and BLM. Transcriptional profiling of DT40 mutants reveals that FANCJ coordinates two independent mechanisms to maintain epigenetic stability near G4 DNA motifs that are dependent on either REV1 or on the WRN and BLM helicases, suggesting a model in which efficient in vivo replication of G-quadruplexes often requires the established 5'-3'-helicase activity of FANCJ acting in concert with either a specialized polymerase or helicase operating in the opposite polarity.
机译:我们以前曾报道过,Y族聚合酶REV1缺乏的DT40细胞在复制G-四链体DNA方面存在缺陷。在体内,这导致DNA合成与复制叉之前置换的组蛋白的再沉积脱钩,这又由于无法回收已有的抑制性组蛋白翻译后修饰而导致转录抑制丧失。在这里,我们报道类似的过程也可能影响转录活性基因,导致其失活。我们利用这一发现来开发基于细胞表面标志物表达缺失的检测方法,以监测单细胞水平的表观遗传不稳定性。该测定法使我们能够证明在先前与G-四链体结构FANCJ,WRN和BLM的解旋有关的三种解旋酶的突变体中与G4 DNA基序相关的表观遗传不稳定性。 DT40突变体的转录谱分析表明,FANCJ协调了两个独立的机制来维持依赖于REV1或WRN和BLM解旋酶的G4 DNA基序附近的表观遗传稳定性,这表明了一个模型,在该模型中,有效的G-四链体的体内复制通常需要FANCJ的5'-3'-解旋酶活性与以相反极性操作的专门聚合酶或解旋酶协同作用。

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