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DNA解旋酶及其在癌症中的作用。

DNA helicases and their roles in cancer.

作者信息

Dhar Srijita, Datta Arindam, Brosh Robert M

机构信息

Laboratory of Molecular Gerontology, National Institute on Aging, National Institutes of Health, Baltimore, MD 21224, USA.

Laboratory of Molecular Gerontology, National Institute on Aging, National Institutes of Health, Baltimore, MD 21224, USA.

出版信息

DNA Repair (Amst). 2020 Dec;96:102994. doi: 10.1016/j.dnarep.2020.102994. Epub 2020 Oct 17.

DOI:10.1016/j.dnarep.2020.102994
PMID:33137625
Abstract

DNA helicases, known for their fundamentally important roles in genomic stability, are high profile players in cancer. Not only are there monogenic helicase disorders with a strong disposition to cancer, it is well appreciated that helicase variants are associated with specific cancers (e.g., breast cancer). Flipping the coin, DNA helicases are frequently overexpressed in cancerous tissues and reduction in helicase gene expression results in reduced proliferation and growth capacity, as well as DNA damage induction and apoptosis of cancer cells. The seminal roles of helicases in the DNA damage and replication stress responses, as well as DNA repair pathways, validate their vital importance in cancer biology and suggest their potential values as targets in anti-cancer therapy. In recent years, many laboratories have characterized the specialized roles of helicase to resolve transcription-replication conflicts, maintain telomeres, mediate cell cycle checkpoints, remodel stalled replication forks, and regulate transcription. In vivo models, particularly mice, have been used to interrogate helicase function and serve as a bridge for preclinical studies that may lead to novel therapeutic approaches. In this review, we will summarize our current knowledge of DNA helicases and their roles in cancer, emphasizing the latest developments.

摘要

DNA解旋酶在基因组稳定性中发挥着至关重要的作用,是癌症领域备受瞩目的关键因子。不仅存在与癌症发生密切相关的单基因解旋酶疾病,而且人们也清楚地认识到解旋酶变体与特定癌症(如乳腺癌)有关。反之,DNA解旋酶在癌组织中常常过度表达,而解旋酶基因表达的降低会导致癌细胞的增殖和生长能力下降,以及DNA损伤诱导和凋亡。解旋酶在DNA损伤和复制应激反应以及DNA修复途径中的关键作用,证实了它们在癌症生物学中的至关重要性,并表明它们作为抗癌治疗靶点的潜在价值。近年来,许多实验室已经阐明了解旋酶在解决转录-复制冲突、维持端粒、介导细胞周期检查点、重塑停滞的复制叉以及调节转录等方面的特殊作用。体内模型,尤其是小鼠模型,已被用于研究解旋酶的功能,并为可能导致新治疗方法的临床前研究搭建桥梁。在这篇综述中,我们将总结目前对DNA解旋酶及其在癌症中作用的认识,重点介绍最新进展。

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