Bouwman Britta A M, Crosetto Nicola
Science for Life Laboratory, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, SE-17165 Stockholm, Sweden.
Genes (Basel). 2018 Dec 14;9(12):632. doi: 10.3390/genes9120632.
DNA double-strand breaks (DSBs) jeopardize genome integrity and can-when repaired unfaithfully-give rise to structural rearrangements associated with cancer. Exogenous agents such as ionizing radiation or chemotherapy can invoke DSBs, but a vast amount of breakage arises during vital endogenous DNA transactions, such as replication and transcription. Additionally, chromatin looping involved in 3D genome organization and gene regulation is increasingly recognized as a possible contributor to DSB events. In this review, we first discuss insights into the mechanisms of endogenous DSB formation, showcasing the trade-off between essential DNA transactions and the intrinsic challenges that these processes impose on genomic integrity. In the second part, we highlight emerging methods for genome-wide profiling of DSBs, and discuss future directions of research that will help advance our understanding of genome-wide DSB formation and repair.
DNA双链断裂(DSB)会危及基因组完整性,并且在修复不准确时会导致与癌症相关的结构重排。诸如电离辐射或化疗等外源性因素可引发DSB,但在重要的内源性DNA活动(如复制和转录)过程中会产生大量的双链断裂。此外,参与三维基因组组织和基因调控的染色质环化越来越被认为是导致DSB事件的一个可能因素。在这篇综述中,我们首先讨论对内源性DSB形成机制的见解,展示基本DNA活动与这些过程对基因组完整性所带来的内在挑战之间的权衡。在第二部分中,我们重点介绍用于全基因组DSB分析的新兴方法,并讨论有助于推进我们对全基因组DSB形成和修复理解的未来研究方向。