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Cellular response to moderate chromatin architectural defects promotes longevity

机译:对中度染色质架构缺陷的细胞反应促进寿命

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Changes in chromatin organization occur during aging. Overexpression of histones partially alleviates these changes and promotes longevity. We report that deletion of the histone H3-H4 minor locus HHT1-HHF1 extended the replicative life span of Saccharomyces cerevisiae. This longevity effect was mediated through TOR signaling inhibition. We present evidence for evolutionarily conserved transcriptional and phenotypic responses to defects in chromatin structure, collectively termed the chromatin architectural defect (CAD) response. Promoters of the CAD response genes were sensitive to histone dosage, with HHT1-HHF1 deletion, nucleosome occupancy was reduced at these promoters allowing transcriptional activation induced by stress response transcription factors Msn2 and Gis1, both of which were required for the life-span extension of hht1-hhf1Δ. Therefore, we conclude that the CAD response induced by moderate chromatin defects promotes longevity.
机译:染色体组织的变化发生在老龄化期间发生。作用细胞的过度表达部分减轻了这些变化并促进了寿命。我们认为缺失组蛋白H3-H4小遗址HHT1-HHF1延长了酿酒酵母的复制寿命。这种寿命效应是通过TOR信号抑制介导的。我们提出了对染色质结构缺陷的进化过程转录和表型反应的证据,统称为染色质架构缺陷(CAD)反应。 CAD响应基因的启动子对组蛋白剂量敏感,具有HHT1-HHF1缺失,在这些启动子上降低了核心占用,允许通过应力响应转录因子MSN2和GIS1诱导的转录激活,这两者都是寿命延伸所需的HHT1-HHF1δ。因此,我们得出结论,中度染色质缺陷诱导的CAD反应促进了寿命。

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