染色质
生物
表观遗传学
CTCF公司
基因组不稳定性
细胞生物学
染色体不稳定性
基因组
组蛋白
表型
遗传学
DNA
基因
DNA损伤
基因表达
染色体
增强子
作者
Ruxandra A. Lambuta,Luca Nanni,Yuanlong Liu,Juan Díaz-Miyar,Arvind Iyer,Daniele Tavernari,Natalya Katanayeva,Giovanni Ciriello,Elisa Oricchio
出处
期刊:Nature
[Nature Portfolio]
日期:2023-03-15
卷期号:615 (7954): 925-933
被引量:38
标识
DOI:10.1038/s41586-023-05794-2
摘要
Whole-genome doubling (WGD) is a recurrent event in human cancers and it promotes chromosomal instability and acquisition of aneuploidies1-8. However, the three-dimensional organization of chromatin in WGD cells and its contribution to oncogenic phenotypes are currently unknown. Here we show that in p53-deficient cells, WGD induces loss of chromatin segregation (LCS). This event is characterized by reduced segregation between short and long chromosomes, A and B subcompartments and adjacent chromatin domains. LCS is driven by the downregulation of CTCF and H3K9me3 in cells that bypassed activation of the tetraploid checkpoint. Longitudinal analyses revealed that LCS primes genomic regions for subcompartment repositioning in WGD cells. This results in chromatin and epigenetic changes associated with oncogene activation in tumours ensuing from WGD cells. Notably, subcompartment repositioning events were largely independent of chromosomal alterations, which indicates that these were complementary mechanisms contributing to tumour development and progression. Overall, LCS initiates chromatin conformation changes that ultimately result in oncogenic epigenetic and transcriptional modifications, which suggests that chromatin evolution is a hallmark of WGD-driven cancer.
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