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范可尼贫血样Mph1解旋酶支持Rad54和Rad5以规避复制应激驱动的染色体桥。

Fanconi Anaemia-Like Mph1 Helicase Backs up Rad54 and Rad5 to Circumvent Replication Stress-Driven Chromosome Bridges.

作者信息

García-Luis Jonay, Machín Félix

机构信息

Unidad de Investigación, Hospital Universitario Nuestra Señora de Candelaria, Carretera del Rosario, 145, 38010 Santa Cruz de Tenerife, Spain.

Instituto de Tecnologías Biomédicas, Universidad de La Laguna, C/Sta María Soledad, 38200 San Cristóbal de La Laguna, Santa Cruz de Tenerife, Spain.

出版信息

Genes (Basel). 2018 Nov 17;9(11):558. doi: 10.3390/genes9110558.

Abstract

Homologous recombination (HR) is a preferred mechanism to deal with DNA replication impairments. However, HR synapsis gives rise to joint molecules (JMs) between the nascent sister chromatids, challenging chromosome segregation in anaphase. Joint molecules are resolved by the actions of several structure-selective endonucleases (SSEs), helicases and topoisomerases. Previously, we showed that yeast double mutants for the Mus81-Mms4 and Yen1 SSEs lead to anaphase bridges (ABs) after replication stress. Here, we have studied the role of the Mph1 helicase in preventing these anaphase aberrations. Mph1, the yeast ortholog of Fanconi anaemia protein M (FANCM), is involved in the removal of the D-loop, the first JM to arise in canonical HR. Surprisingly, the absence of Mph1 alone did not increase ABs; rather, it blocked cells in G2. Interestingly, in the search for genetic interactions with functionally related helicases and translocases, we found additive effects on the G2 block and post-G2 aberrations between Δ and knockout mutants for Srs2, Rad54 and Rad5. Based on these interactions, we suggest that Mph1 acts coordinately with these helicases in the non-canonical HR-driven fork regression mechanism to bypass stalled replication forks.

摘要

同源重组(HR)是处理DNA复制损伤的一种首选机制。然而,HR联会会在新生姐妹染色单体之间产生连接分子(JMs),这对后期的染色体分离构成挑战。连接分子通过几种结构选择性核酸内切酶(SSEs)、解旋酶和拓扑异构酶的作用得以解决。此前,我们发现,Mus81-Mms4和Yen1 SSEs的酵母双突变体在复制应激后会导致后期桥(ABs)的出现。在此,我们研究了Mph1解旋酶在防止这些后期异常中的作用。Mph1是范可尼贫血蛋白M(FANCM)的酵母同源物,参与去除D环,这是经典HR中出现的第一个JM。令人惊讶的是,单独缺失Mph1并不会增加ABs;相反,它会使细胞停滞在G2期。有趣的是,在寻找与功能相关的解旋酶和转位酶的遗传相互作用时,我们发现Srs2、Rad54和Rad5的Δ和敲除突变体之间对G2期阻滞和G2期后异常存在累加效应。基于这些相互作用,我们认为Mph1在非经典HR驱动的叉回归机制中与这些解旋酶协同作用,以绕过停滞的复制叉。

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