Cell cycle gene alterations associate with a redistribution of mutation risk across chromosomal domains in human cancers

生物 遗传学 突变 体细胞 细胞周期 基因 异染色质 突变 突变率 种系突变 DNA修复 癌变 染色体
作者
Marina Salvadores,Fran Supek
出处
期刊:Nature cancer [Nature Portfolio]
卷期号:5 (2): 330-346 被引量:11
标识
DOI:10.1038/s43018-023-00707-8
摘要

Mutations in human cells exhibit increased burden in heterochromatic, late DNA replication time (RT) chromosomal domains, with variation in mutation rates between tissues mirroring variation in heterochromatin and RT. We observed that regional mutation risk further varies between individual tumors in a manner independent of cell type, identifying three signatures of domain-scale mutagenesis in >4,000 tumor genomes. The major signature reflects remodeling of heterochromatin and of the RT program domains seen across tumors, tissues and cultured cells, and is robustly linked with higher expression of cell proliferation genes. Regional mutagenesis is associated with loss of activity of the tumor-suppressor genes RB1 and TP53, consistent with their roles in cell cycle control, with distinct mutational patterns generated by the two genes. Loss of regional heterogeneity in mutagenesis is associated with deficiencies in various DNA repair pathways. These mutation risk redistribution processes modify the mutation supply towards important genes, diverting the course of somatic evolution. Salvadores and Supek derive three regional mutation density signatures from whole-genome profiles of >4,000 tumors that are associated with cell cycle gene expression and alter somatic mutation rates independently of tissue of origin.
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