MOE Key Laboratory for Membraneless Organelles and Cellular Dynamics, University of Science and Technology of China School of Life Sciences, Hefei 230027, China.
Anhui Key Laboratory for Chemical Biology, Hefei National Science Center for Inter-disciplinary Sciences, Hefei 230027, China.
J Mol Cell Biol. 2024 Sep 30;16(4). doi: 10.1093/jmcb/mjae016.
Chromothripsis, a type of complex chromosomal rearrangement originally known as chromoanagenesis, has been a subject of extensive investigation due to its potential role in various diseases, particularly cancer. Chromothripsis involves the rapid acquisition of tens to hundreds of structural rearrangements within a short period, leading to complex alterations in one or a few chromosomes. This phenomenon is triggered by chromosome mis-segregation during mitosis. Errors in accurate chromosome segregation lead to formation of aberrant structural entities such as micronuclei or chromatin bridges. The association between chromothripsis and cancer has attracted significant interest, with potential implications for tumorigenesis and disease prognosis. This review aims to explore the intricate mechanisms and consequences of chromothripsis, with a specific focus on its association with mitotic perturbations. Herein, we discuss a comprehensive analysis of crucial molecular entities and pathways, exploring the intricate roles of the CIP2A-TOPBP1 complex, micronuclei formation, chromatin bridge processing, DNA damage repair, and mitotic checkpoints. Moreover, the review will highlight recent advancements in identifying potential therapeutic targets and the underlying molecular mechanisms associated with chromothripsis, paving the way for future therapeutic interventions in various diseases.
染色体重排,一种复杂的染色体重排,最初被称为染色质发生,由于其在各种疾病,特别是癌症中的潜在作用,已经引起了广泛的研究。染色体重排涉及在短时间内快速获得数十到数百个结构重排,导致一个或几个染色体的复杂改变。这种现象是由有丝分裂过程中的染色体错误分离引发的。染色体分离的精确错误导致形成异常的结构实体,如微核或染色质桥。染色体重排与癌症之间的关联引起了极大的关注,可能对肿瘤发生和疾病预后有影响。本综述旨在探讨染色体重排的复杂机制和后果,特别关注其与有丝分裂扰动的关联。在此,我们讨论了对关键分子实体和途径的全面分析,探讨了 CIP2A-TOPBP1 复合物、微核形成、染色质桥处理、DNA 损伤修复和有丝分裂检查点的复杂作用。此外,该综述将重点介绍识别与染色体重排相关的潜在治疗靶点和潜在分子机制的最新进展,为未来在各种疾病中进行治疗干预铺平道路。