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癌基因诱导的复制应激耐受性:基因组不稳定的助推器

Tolerance of Oncogene-Induced Replication Stress: A Fuel for Genomic Instability.

作者信息

Igarashi Taichi, Yano Kimiyoshi, Endo Syoju, Shiotani Bunsyo

机构信息

Laboratory of Genome Stress Signaling, National Cancer Center Research Institute, Chuo-ku, Tokyo 104-0045, Japan.

Department of Biosciences, School of Science, Kitasato University, Minami-ku, Sagamihara-city, Kanagawa 252-0373, Japan.

出版信息

Cancers (Basel). 2024 Oct 17;16(20):3507. doi: 10.3390/cancers16203507.

Abstract

Activation of oncogenes disturbs a wide variety of cellular processes and induces physiological dysregulation of DNA replication, widely referred to as replication stress (RS). Oncogene-induced RS can cause replication forks to stall or collapse, thereby leading to DNA damage. While the DNA damage response (DDR) can provoke an anti-tumor barrier to prevent the development of cancer, a small subset of cells triggers replication stress tolerance (RST), allowing precancerous cells to survive, thereby promoting clonal expansion and genomic instability (GIN). Genomic instability (GIN) is a hallmark of cancer, driving genetic alterations ranging from nucleotide changes to aneuploidy. These alterations increase the probability of oncogenic events and create a heterogeneous cell population with an enhanced ability to evolve. This review explores how major oncogenes such as RAS, cyclin E, and MYC induce RS through diverse mechanisms. Additionally, we delve into the strategies employed by normal and cancer cells to tolerate RS and promote GIN. Understanding the intricate relationship between oncogene activation, RS, and GIN is crucial to better understand how cancer cells emerge and to develop potential cancer therapies that target these vulnerabilities.

摘要

癌基因的激活会扰乱多种细胞过程,并引发DNA复制的生理失调,这被广泛称为复制应激(RS)。癌基因诱导的RS会导致复制叉停滞或崩溃,从而导致DNA损伤。虽然DNA损伤反应(DDR)可以引发抗肿瘤屏障以防止癌症发展,但一小部分细胞会触发复制应激耐受(RST),使癌前细胞得以存活,从而促进克隆扩增和基因组不稳定(GIN)。基因组不稳定(GIN)是癌症的一个标志,它会导致从核苷酸变化到非整倍体等一系列遗传改变。这些改变增加了致癌事件的概率,并产生了具有更强进化能力的异质细胞群体。本综述探讨了RAS、细胞周期蛋白E和MYC等主要癌基因如何通过多种机制诱导RS。此外,我们深入研究了正常细胞和癌细胞用于耐受RS并促进GIN的策略。了解癌基因激活、RS和GIN之间的复杂关系对于更好地理解癌细胞的产生以及开发针对这些脆弱性的潜在癌症治疗方法至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef91/11506635/36bd3a48ed11/cancers-16-03507-g001.jpg

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