Hamadeh Zeid, Lansdorp Peter
Terry Fox Laboratory, British Columbia Cancer Research Centre, Vancouver, BC, Canada.
Department of Genome Science and Technology, University of British Columbia, Vancouver, BC, Canada.
Front Cell Dev Biol. 2020 May 25;8:324. doi: 10.3389/fcell.2020.00324. eCollection 2020.
Maintenance of genome stability is essential to prevent the accumulation of DNA mutations that can initiate oncogenesis and facilitate tumor progression. Studies of DNA repair genes have revealed a highly dynamic and redundant network of genes and proteins responsible for maintaining genome stability. Cancer cells are often deficient in DNA repair, and the resulting genome instability decreases their fitness but also allows for more rapid evolution under selective pressure. Of particular interest for genome stability are the RecQ class of helicases. Five genes in this class, , and , are unique to mammals, as simpler eukaryotes and bacteria appear to have only one homolog, RecQ. The precise role of each of the five mammalian RecQ helicases remains to be determined. Whereas loss of function mutations of , and in humans are associated with specific diseases, and have not yet been associated with specific disorders. Mice deficient in Recql5 are more likely to develop cancer, and human cells deficient in RECQL5 display chromosomal instability and elevated sister chromatid exchange events, similar to cells deficient in any of the other RecQ helicases. Recent studies support the hypothesis that RECQL5 can resolve intermediate DNA repair structures resulting from the collision of DNA transcription and replication machinery. In this review, we aim to summarize current knowledge regarding RECQL5 in the context of DNA repair, replication, and transcription to help uncover the role of RECQL5 in the maintenance of genome stability.
维持基因组稳定性对于防止DNA突变的积累至关重要,这些突变可引发肿瘤发生并促进肿瘤进展。对DNA修复基因的研究揭示了一个高度动态且冗余的基因和蛋白质网络,负责维持基因组稳定性。癌细胞通常存在DNA修复缺陷,由此产生的基因组不稳定性降低了它们的适应性,但也使得它们在选择压力下能够更快速地进化。对于基因组稳定性而言,RecQ解旋酶家族尤其令人关注。该家族中的五个基因,即 、 、 、 和 ,是哺乳动物特有的,因为较简单的真核生物和细菌似乎只有一个同源物RecQ。五个哺乳动物RecQ解旋酶各自的确切作用仍有待确定。虽然人类中 、 和 的功能丧失突变与特定疾病相关,但 和 尚未与特定疾病相关联。Recql5缺陷型小鼠更易患癌症,而RECQL5缺陷型人类细胞表现出染色体不稳定性以及姐妹染色单体交换事件增加,这与其他任何RecQ解旋酶缺陷型细胞类似。最近的研究支持这样一种假说,即RECQL5可以解析由DNA转录和复制机器碰撞产生的中间DNA修复结构。在本综述中,我们旨在总结目前在DNA修复、复制和转录背景下关于RECQL5的知识,以帮助揭示RECQL5在维持基因组稳定性中的作用。