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首页> 外文期刊>Nucleic Acids Research >Temporal regulation of the Mus81-Mms4 endonuclease ensures cell survival under conditions of DNA damage
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Temporal regulation of the Mus81-Mms4 endonuclease ensures cell survival under conditions of DNA damage

机译:Mus81-Mms4核酸内切酶的时间调控可确保在DNA损伤的情况下细胞存活

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摘要

The structure-specific Mus81-Eme1/Mms4 endonuclease contributes importantly to DNA repair and genome integrity maintenance. Here, using budding yeast, we have studied its function and regulation during the cellular response to DNA damage and show that this endonuclease is necessary for successful chromosome replication and cell survival in the presence of DNA lesions that interfere with replication fork progression. On the contrary, Mus81-Mms4 is not required for coping with replicative stress originated by acute treatment with hydroxyurea (HU), which causes fork stalling. Despite its requirement for dealing with DNA lesions that hinder DNA replication, Mus81-Mms4 activation is not induced by DNA damage at replication forks. Full Mus81-Mms4 activity is only acquired when cells finish S-phase and the endonuclease executes its function after the bulk of genome replication is completed. This post-replicative mode of action of Mus81-Mms4 limits its nucleolytic activity during S-phase, thus avoiding the potential cleavage of DNA substrates that could cause genomic instability during DNA replication. At the same time, it constitutes an efficient fail-safe mechanism for processing DNA intermediates that cannot be resolved by other proteins and persist after bulk DNA synthesis, which guarantees the completion of DNA repair and faithful chromosome replication when the DNA is damaged.
机译:特定于结构的Mus81-Eme1 / Mms4内切核酸酶对DNA修复和基因组完整性维护有重要贡献。在这里,我们使用发芽的酵母研究了其在细胞对DNA损伤的反应过程中的功能和调控,并显示了这种核酸内切酶对于成功的染色体复制和存在DNA损伤(干扰复制叉进程)的细胞存活是必需的。相反,Mus81-Mms4不需要应付因使用羟基脲(HU)进行急性治疗而引起的复制性压力,而羟基脲会引起叉车停转。尽管需要处理阻碍DNA复制的DNA损伤,但Mus81-Mms4激活并没有被复制叉处的DNA损伤诱导。仅当细胞完成S期且核酸内切酶在大部分基因组复制完成后执行其功能时,才能获得全部Mus81-Mms4活性。 Mus81-Mms4的这​​种复制后的作用方式限制了其在S期的溶核活性,从而避免了DNA底物的潜在裂解,而这种裂解可能会导致DNA复制过程中的基因组不稳定。同时,它构成了一种有效的故障安全机制,用于处理无法被其他蛋白质解析并在大量DNA合成后仍然存在的DNA中间体,从而保证了DNA受损时DNA修复和忠实染色体复制的完成。

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