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Human RECQL5: Guarding the crossroads of DNA replication and transcription and providing backup capability

机译:Human RECQL5:保护DNA复制和转录的十字路口并提供备份功能

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摘要

DNA helicases are ubiquitous enzymes that catalyze unwinding of duplex DNA and function in all metabolic processes in which access to single-stranded DNA is required, including DNA replication, repair, recombination and RNA transcription. RecQ helicases are a conserved family of DNA helicases that display highly specialized and vital roles in the maintenance of genome stability. Mutations in three of the five human RecQ helicases, BLM, WRN and RECQL4 are associated with the genetic disorders Bloom syndrome, Werner syndrome and Rothmund-Thomson syndrome that are characterized by chromosomal instability, premature aging and predisposition to cancer. The biological role of human RECQL5 is only partially understood and RECQL5 has not yet been associated with any human disease. Illegitimate recombination and replication stress are hallmarks of human cancers and common instigators for genomic instability and cell death. Recql5 knockout mice are cancer prone and show increased chromosomal instability. Recql5-deficient mouse embryonic fibroblasts are sensitive to camptothecin and display elevated levels of sister chromatid exchanges. Unlike other human RecQ helicases, RECQL5 is recruited to single-stranded DNA breaks and is also proposed to play an essential role in RNA transcription. Here, we review the established roles of RECQL5 at the cross roads of DNA replication, recombination and transcription, and propose that human RECQL5 provides important backup functions in the absence of other DNA helicases.
机译:DNA解旋酶是普遍存在的酶,可催化双链DNA的解链并在所有需要单链DNA进入的代谢过程中起作用,包括DNA复制,修复,重组和RNA转录。 RecQ解旋酶是DNA解旋酶的保守家族,在维持基因组稳定性方面显示出高度专门化和至关重要的作用。五种人类RecQ解旋酶中的三种突变(BLM,WRN和RECQL4)与遗传病Bloom综合征,Werner综合征和Rothmund-Thomson综合征有关,这些疾病的特征是染色体不稳定,过早衰老和易患癌症。人类RECQL5的生物学作用仅得到部分了解,RECQL5尚未与任何人类疾病相关联。非法的重组和复制压力是人类癌症的标志,也是基因组不稳定和细胞死亡的常见诱因。 Recql5基因敲除小鼠易患癌症,且染色体不稳定。 Recql5缺陷的小鼠胚胎成纤维细胞对喜树碱敏感,并显示出姊妹染色单体交换水平升高。与其他人类RecQ解旋酶不同,RECQL5被募集到单链DNA断裂处,并且还被建议在RNA转录中起重要作用。在这里,我们审查了RECQL5在DNA复制,重组和转录的交叉路口中已确立的作用,并提出人RECQL5在没有其他DNA解旋酶的情况下提供了重要的备份功能。

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