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组蛋白着火了:Dun1 和 Mrc1 对超乙酰化基因组的复制起点激活和复制的影响。

Histones on fire: the effect of Dun1 and Mrc1 on origin firing and replication of hyper-acetylated genomes.

机构信息

The Shmunis School of Biomedicine and Cancer Research, Tel Aviv University, Ramat Aviv, 69978, Tel Aviv, Israel.

出版信息

Curr Genet. 2021 Aug;67(4):501-510. doi: 10.1007/s00294-021-01175-2. Epub 2021 Mar 14.

DOI:10.1007/s00294-021-01175-2
PMID:33715066
Abstract

As cells replicate their DNA, there is a need to synthesize new histones with which to wrap it. Newly synthesized H3 histones that are incorporated into the assembling chromatin behind the replication fork are acetylated at lysine 56. The acetylation is removed by two deacetylases, Hst3 and Hst4. This process is tightly regulated and any perturbation leads to genomic instability and replicative stress. We recently showed that Dun1, a kinase implicated mainly in the regulation of dNTPs, is vital in cells with hyper-acetylation, to counteract Rad53's inhibition on late-firing origins of replication. Our work showed that ∆hst3 ∆hst4 cells depend on late origin firing for survival, and are unable to prevent Rad53's inhibition when Dun1 is inactive. Thus, our work describes a role for Dun1 that is independent on its known function as a regulator of dNTP levels. Here we show that Mrc1 (Claspin in mammals), a protein that moves with the replicating fork and participates in both replication and checkpoint functions, plays also an essential role in the absence of H3K56Ac deacetylation. The sum of the results shown here and in our recent publication suggests that dormant origins are also utilized in these cells, making Mrc1, which regulates firing from these origins, also essential when histone H3 is hyper-acetylated. Thus, cells suffering from hyper-acetylation of H3K56 experience replication stress caused by a combination of prone-to-collapse forks and limited replication tracts. This combination makes both Dun1 and Mrc1, each acting on different targets, essential for viability.

摘要

当细胞复制其 DNA 时,需要合成新的组蛋白来包裹它。在复制叉后面组装的染色质中,新合成的 H3 组蛋白在赖氨酸 56 处乙酰化。乙酰化由两种去乙酰化酶 Hst3 和 Hst4 去除。这个过程受到严格的调控,任何干扰都会导致基因组不稳定和复制应激。我们最近表明,激酶 Dun1 主要参与 dNTPs 的调节,在高度乙酰化的细胞中对于抵消 Rad53 对复制起始点的抑制作用至关重要。我们的工作表明,∆hst3 ∆hst4 细胞依赖晚期起始点的复制来存活,当 Dun1 失活时,它们无法阻止 Rad53 的抑制作用。因此,我们的工作描述了 Dun1 的一个独立于其作为 dNTP 水平调节剂的已知功能的作用。在这里,我们表明 Mrc1(哺乳动物中的 Claspin),一种与复制叉一起移动并参与复制和检查点功能的蛋白质,在缺乏 H3K56Ac 去乙酰化的情况下也起着至关重要的作用。这里显示的结果和我们最近的出版物表明,休眠起始点也在这些细胞中被利用,因此,调节这些起始点复制的 Mrc1 在 H3 组蛋白高度乙酰化时也是必需的。因此,H3K56 乙酰化过度的细胞会经历由易崩溃的叉和有限的复制片段引起的复制应激。这种组合使 Dun1 和 Mrc1(分别作用于不同的靶标)都成为细胞存活所必需的。

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本文引用的文献

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PLoS Genet. 2021 Feb 18;17(2):e1009391. doi: 10.1371/journal.pgen.1009391. eCollection 2021 Feb.
2
Ctf18-RFC and DNA Pol ϵ form a stable leading strand polymerase/clamp loader complex required for normal and perturbed DNA replication.Ctf18-RFC 和 DNA 聚合酶 ϵ 形成一个稳定的前导链聚合酶/夹取器加载器复合物,这是正常和受干扰的 DNA 复制所必需的。
Nucleic Acids Res. 2020 Aug 20;48(14):8128-8145. doi: 10.1093/nar/gkaa541.
3
Recombinant expression and characterization of yeast Mrc1, a DNA replication checkpoint mediator.
酵母 Mrc1 蛋白的重组表达与鉴定,该蛋白是一种 DNA 复制检验点介质。
Prep Biochem Biotechnol. 2020;50(2):198-203. doi: 10.1080/10826068.2019.1692216. Epub 2019 Nov 22.
4
Checkpoint inhibition of origin firing prevents DNA topological stress.抑制原点激发可防止 DNA 拓扑学压力。
Genes Dev. 2019 Nov 1;33(21-22):1539-1554. doi: 10.1101/gad.328682.119. Epub 2019 Oct 17.
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Signaling pathways of replication stress in yeast.酵母中复制应激的信号通路。
FEMS Yeast Res. 2017 Mar 1;17(2). doi: 10.1093/femsyr/fow101.
6
Alternative clamp loaders/unloaders.替代性钳夹加载器/卸载器。
FEMS Yeast Res. 2016 Nov;16(7). doi: 10.1093/femsyr/fow084. Epub 2016 Sep 24.
7
Continuous chromosomal instability in human pluripotent stem cells - the role of DNA replication.人类多能干细胞中的持续染色体不稳定——DNA复制的作用
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8
MCM: one ring to rule them all.魔多黑门:统御众戒,皆归吾指。 (注:“MCM”常见释义为“魔多黑门” ,此句出自《指环王》相关内容,为意译以符合语境)
Curr Opin Struct Biol. 2016 Apr;37:145-51. doi: 10.1016/j.sbi.2016.01.014. Epub 2016 Feb 8.
9
Quantitative BrdU immunoprecipitation method demonstrates that Fkh1 and Fkh2 are rate-limiting activators of replication origins that reprogram replication timing in G1 phase.定量BrdU免疫沉淀法表明,Fkh1和Fkh2是复制起点的限速激活因子,可在G1期重新编程复制时间。
Genome Res. 2016 Mar;26(3):365-75. doi: 10.1101/gr.196857.115. Epub 2016 Jan 4.
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A conserved Polϵ binding module in Ctf18-RFC is required for S-phase checkpoint activation downstream of Mec1.Ctf18-RFC 中的一个保守的 Polϵ 结合模块对于 Mec1 下游的 S 期检验点激活是必需的。
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