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利用核仁 DNA 损伤反应进行癌症治疗。

Harnessing the Nucleolar DNA Damage Response in Cancer Therapy.

机构信息

Peter MacCallum Cancer Centre, Melbourne, VIC 3000, Australia.

Sir Peter MacCallum Department of Oncology, University of Melbourne, Melbourne, VIC 3010, Australia.

出版信息

Genes (Basel). 2021 Jul 28;12(8):1156. doi: 10.3390/genes12081156.

Abstract

The nucleoli are subdomains of the nucleus that form around actively transcribed ribosomal RNA (rRNA) genes. They serve as the site of rRNA synthesis and processing, and ribosome assembly. There are 400-600 copies of rRNA genes (rDNA) in human cells and their highly repetitive and transcribed nature poses a challenge for DNA repair and replication machineries. It is only in the last 7 years that the DNA damage response and processes of DNA repair at the rDNA repeats have been recognized to be unique and distinct from the classic response to DNA damage in the nucleoplasm. In the last decade, the nucleolus has also emerged as a central hub for coordinating responses to stress via sequestering tumor suppressors, DNA repair and cell cycle factors until they are required for their functional role in the nucleoplasm. In this review, we focus on features of the rDNA repeats that make them highly vulnerable to DNA damage and the mechanisms by which rDNA damage is repaired. We highlight the molecular consequences of rDNA damage including activation of the nucleolar DNA damage response, which is emerging as a unique response that can be exploited in anti-cancer therapy. In this review, we focus on CX-5461, a novel inhibitor of Pol I transcription that induces the nucleolar DNA damage response and is showing increasing promise in clinical investigations.

摘要

核仁是细胞核的亚区,围绕着活跃转录的核糖体 RNA(rRNA)基因形成。它们是 rRNA 合成和加工以及核糖体组装的场所。人类细胞中有 400-600 个 rRNA 基因(rDNA),其高度重复和转录性质对 DNA 修复和复制机制构成了挑战。直到最近 7 年,人们才认识到 rDNA 重复序列的 DNA 损伤反应和修复过程是独特的,与核质中经典的 DNA 损伤反应不同。在过去的十年中,核仁也成为了一个协调应激反应的中心枢纽,通过隔离肿瘤抑制因子、DNA 修复和细胞周期因子,直到它们在核质中发挥功能作用时才需要它们。在这篇综述中,我们重点介绍了 rDNA 重复序列的特征,这些特征使它们极易受到 DNA 损伤的影响,以及修复 rDNA 损伤的机制。我们强调了 rDNA 损伤的分子后果,包括核仁 DNA 损伤反应的激活,这正在成为一种独特的反应,可以在癌症治疗中得到利用。在这篇综述中,我们重点介绍了 CX-5461,这是一种新型的 Pol I 转录抑制剂,它能诱导核仁 DNA 损伤反应,并在临床研究中显示出越来越大的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55af/8393943/322f0461bb60/genes-12-01156-g001.jpg

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