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Roles of RECQ helicases in recombination based DNA repair, genomic stability and aging

机译:RECQ解旋酶在基于重组的DNA修复,基因组稳定性和衰老中的作用

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摘要

The maintenance of the stability of genetic material is an essential feature of every living organism. Organisms across all kingdoms have evolved diverse and highly efficient repair mechanisms to protect the genome from deleterious consequences of various genotoxic factors that might tend to destabilize the integrity of the genome in each generation. One such group of proteins that is actively involved in genome surveillance is the RecQ helicase family. These proteins are highly conserved DNA helicases, which have diverse roles in multiple DNA metabolic processes such as DNA replication, recombination and DNA repair. In humans, five RecQ helicases have been identified and three of them namely, WRN, BLM and RecQL4 have been linked to genetic diseases characterized by genome instability, premature aging and cancer predisposition. This helicase family plays important roles in various DNA repair pathways including protecting the genome from illegitimate recombination during chromosome segregation in mitosis and assuring genome stability. This review mainly focuses on various roles of human RecQ helicases in the process of recombination-based DNA repair to maintain genome stability and physiological consequences of their defects in the development of cancer and premature aging.
机译:维持遗传物质的稳定性是每个生物体的基本特征。所有王国的生物体都进化出了多种高效的修复机制,可以保护基因组免受可能会破坏每一代基因组完整性的各种遗传毒性因素的有害影响。 RecQ解旋酶家族是积极参与基因组监测的这类蛋白质之一。这些蛋白质是高度保守的DNA解旋酶,在多个DNA代谢过程(例如DNA复制,重组和DNA修复)中具有多种作用。在人类中,已鉴定出五种RecQ解旋酶,其中三种,即WRN,BLM和RecQL4与以基因组不稳定,过早衰老和癌症易感性为特征的遗传疾病有关。该解旋酶家族在各种DNA修复途径中起着重要作用,包括在有丝分裂中的染色体分离过程中保护基因组免受非法重组,并确保基因组稳定性。这篇综述主要关注人类RecQ解旋酶在基于重组的DNA修复过程中的各种作用,以维持基因组稳定性以及其在癌症发展和过早衰老中的缺陷的生理后果。

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