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A role for SUV39H1-mediated H3K9 trimethylation in the control of genome stability and senescence in WI38 human diploid lung fibroblasts

机译:SUV39H1介导的H3K9三甲基化在WI38人二倍体肺成纤维细胞基因组稳定性和衰老控制中的作用

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摘要

Cellular senescence has been associated with the age-dependent decline in tissue repair and regeneration, the increasing deterioration of the immune system, and the age-dependent increase in the incidence of cancer. Here, we show that senescence of human lung fibroblast WI-38 cells is associated with extensive changes to the gene expression profile, including the differential expression of transcriptional and epigenetic regulators. Among those, SUV39H1 was downregulated in senescent cells, correlated with a decrease in global H3K9 trimethylation, reduced H3K9me3 levels in repetitive DNA sequence regions such as satellites and transposable elements, and increased transcription of these repetitive DNA sequences. This indicates that SUV39H1 plays a role in limiting genomic instability in dividing cells and suggests that SUV39H1 downregulation may contribute to the establishment of senescence by increasing genomic instability. Additionally, the manipulation of SUV39H1 expression levels resulted in altered cell cycle distribution, suggesting a causal role of SUV39H1 in the establishment of cellular senescence. Thus, based on our findings and the results from previous reports, we propose a model in which SUV39H1 downregulation promotes the establishment of cellular senescence.
机译:细胞衰老与组织修复和再生的年龄依赖性下降,免疫系统恶化的增加以及癌症发病率的年龄依赖性增加有关。在这里,我们表明人类肺成纤维细胞WI-38细胞的衰老与基因表达谱的广泛变化有关,包括转录和表观遗传调控子的差异表达。其中,SUV39H1在衰老细胞中被下调,与整体H3K9三甲基化的减少,卫星和转座子等重复DNA序列区域中H3K9me3的水平降低以及这些重复DNA序列的转录增加有关。这表明SUV39H1在限制分裂细胞的基因组不稳定性中发挥作用,并暗示SUV39H1的下调可能通过增加基因组不稳定性而有助于衰老的建立。此外,对SUV39H1表达水平的操纵导致细胞周期分布改变,提示SUV39H1在细胞衰老建立中起因果作用。因此,基于我们的发现和先前报道的结果,我们提出了一个模型,其中SUV39H1下调促进了细胞衰老的建立。

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