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转录-复制冲突驱动依赖R环的核小体驱逐,且转录恢复需要DOT1L活性。

Transcription-replication conflicts drive R-loop-dependent nucleosome eviction and require DOT1L activity for transcription recovery.

作者信息

Werner Marcel, Trauner Manuel, Schauer Tamas, Ummethum Henning, Márquez-Gómez Elizabeth, Lalonde Maxime, Lee Clare S K, Tsirkas Ioannis, Sajid Atiqa, Murriello Augusto C, Längst Gernot, Hamperl Stephan

机构信息

Chromosome Dynamics and Genome Stability, Institute of Epigenetics and Stem Cells, Helmholtz Munich, Feodor-Lynen-Strasse 21, 81377 München, Germany.

Biochemistry Center Regensburg, University of Regensburg, Universitätsstr. 31, 93053 Regensburg, Germany.

出版信息

Nucleic Acids Res. 2025 Feb 8;53(4). doi: 10.1093/nar/gkaf109.

Abstract

Progressing transcription and replication machineries profoundly impact their underlying chromatin template. Consequently, transcription-replication conflict (TRC) sites are vulnerable to chromatin and epigenome alterations, provoking genome instability. Here, we engineered an inducible TRC reporter system using a genome-integrated R-loop-prone sequence and characterized the dynamic changes of the local chromatin structure inflicted by TRCs, leading to reduced nucleosome occupancy and replication fork blockage. Strikingly, inducing a small number of TRCs on the genome results in a measurable global replication stress response. Furthermore, we find a TRC-dependent increase in H3K79 methylation specifically at the R-loop forming TRC site. Accordingly, inhibition of the H3K79 methyltransferase DOT1L leads to reduced transcriptional output and an exacerbated DNA damage response, suggesting that deposition of this mark is required for effective transcription recovery and resolution of TRCs. Our work shows the molecular dynamics and reveals a specific epigenetic modifier bookmarking TRC sites, relevant to cancer and other diseases.

摘要

正在进行的转录和复制机制会对其潜在的染色质模板产生深远影响。因此,转录-复制冲突(TRC)位点易受染色质和表观基因组改变的影响,从而引发基因组不稳定。在此,我们利用基因组整合的易于形成R环的序列构建了一个可诱导的TRC报告系统,并对TRC引起的局部染色质结构的动态变化进行了表征,结果导致核小体占有率降低和复制叉阻滞。令人惊讶的是,在基因组上诱导少量TRC会导致可测量的全局复制应激反应。此外,我们发现H3K79甲基化在R环形成的TRC位点特异性地依赖于TRC增加。因此,抑制H3K79甲基转移酶DOT1L会导致转录输出减少和DNA损伤反应加剧,这表明该标记的沉积是有效转录恢复和TRC解决所必需的。我们的工作展示了分子动力学,并揭示了一个特定的表观遗传修饰因子标记TRC位点,这与癌症和其他疾病相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3429/11840560/76f10c76c4a4/gkaf109figgra1.jpg

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