TOF1 and RRM3 reveal a link between gene silencing and the pausing of replication forks.

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY Current Genetics Pub Date : 2023-12-01 Epub Date: 2023-06-22 DOI:10.1007/s00294-023-01273-3
Kholoud Shaban, Andrew Dolson, Ashley Fisher, Emma Lessard, Safia Mahabub Sauty, Krassimir Yankulov
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Abstract

Eukaryotic DNA replication is accompanied by the disassembly and reassembly of nucleosomes and the transmission of epigenetic marks to the newly assembled chromatids. Several histone chaperones, including CAF-1 and Asf1p, are central to these processes. On the other hand, replication forks pause at numerous positions throughout the genome, but it is not known if and how this pausing affects the reassembly and maintenance of chromatin structures. Here, we applied drug-free gene silencing assays to analyze the genetic interactions between CAC1, ASF1, and two genes that regulate the stability of the paused replisome (TOF1) and the resumption of elongation (RRM3). Our results show that TOF1 and RRM3 differentially interact with CAF-1 and ASF1 and that the deletions of TOF1 and RRM3 lead to reduced silencing and increased frequency of epigenetic conversions at three loci in the genome of S. cerevisiae. Our study adds details to the known activities of CAF-1 and Asf1p and suggests that the pausing of the replication fork can lead to epigenetic instability.

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TOF1和RRM3揭示了基因沉默和复制分叉暂停之间的联系。
真核生物DNA的复制伴随着核小体的拆卸和重组以及表观遗传标记向新组装的染色单体的传递。一些组蛋白伴侣蛋白,包括ca -1和Asf1p,是这些过程的核心。另一方面,复制叉在整个基因组的许多位置暂停,但尚不清楚这种暂停是否以及如何影响染色质结构的重组和维持。在这里,我们采用无药物基因沉默实验来分析CAC1、ASF1和两个调节暂停复制体(TOF1)稳定性和恢复延伸(RRM3)的基因之间的遗传相互作用。我们的研究结果表明,TOF1和RRM3与ca -1和ASF1的相互作用存在差异,TOF1和RRM3的缺失导致酿酒葡萄球菌基因组中三个位点的沉默减少和表观遗传转换频率增加。我们的研究增加了已知的ca -1和Asf1p活性的细节,并表明复制叉的暂停可能导致表观遗传不稳定。
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来源期刊
Current Genetics
Current Genetics 生物-遗传学
CiteScore
6.00
自引率
0.00%
发文量
34
审稿时长
1 months
期刊介绍: Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical. Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.
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