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Nucleolar repression facilitates initiation and maintenance of senescence

机译:核仁抑制促进衰老的开始和维持

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摘要

Tumor cells with defective apoptosis pathways often respond to chemotherapy by entering irreversible cell cycle arrest with features of senescence. However, rare cells can bypass entry to senescence, or re-enter cell cycle from a senescent state. Deficiency in senescence induction and maintenance may contribute to treatment resistance and early relapse after therapy. Senescence involves epigenetic silencing of cell cycle genes and reduced rRNA transcription. We found that senescence-inducing treatments such as DNA damage and RNA polymerase I inhibition stimulate the binding between the nucleolar protein NML (nucleomethylin) and SirT1. The NML complex promotes rDNA heterochromatin formation and represses rRNA transcription. Depletion of NML reduced the levels of H3K9Me3 and H3K27Me3 heterochromatin markers on rDNA and E2F1 target promoters in senescent cells, increased rRNA transcription, and increased the frequency of cell cycle re-entry. Depletion of the nucleolar transcription repressor factor TIP5 also promoted escape from senescence. Furthermore, tumor tissue staining showed that breast tumors without detectable nucleolar NML expression had poor survival. The results suggest that efficient regulation of nucleolar rDNA transcription facilitates the maintenance of irreversible cell cycle arrest in senescent cells. Deficiency in nucleolar transcription repression may accelerate tumor relapse after chemotherapy.
机译:具有凋亡途径缺陷的肿瘤细胞通常通过进入具有衰老特征的不可逆的细胞周期停滞来对化学疗法作出反应。但是,稀有细胞可以绕过衰老,或者从衰老状态重新进入细胞周期。衰老诱导和维持的缺乏可能导致治疗耐药性和治疗后早期复发。衰老涉及细胞周期基因的表观遗传沉默和减少的rRNA转录。我们发现,诸如DNA损伤和RNA聚合酶I抑制等衰老诱导治疗刺激了核仁蛋白NML(nucleomethylin)和SirT1之间的结合。 NML复合物促进rDNA异染色质形成并抑制rRNA转录。 NML的耗尽减少了衰老细胞中rDNA和E2F1目标启动子上H3K9Me3和H3K27Me3异染色质标记的水平,增加了rRNA转录,并增加了细胞周期再进入的频率。核仁转录抑制因子TIP5的消耗也促进了衰老的逃逸。此外,肿瘤组织染色显示,没有可检测的核仁NML表达的乳腺肿瘤存活率较差。结果表明,有效调节核仁rDNA转录有助于维持衰老细胞中不可逆的细胞周期停滞。核仁转录抑制的缺乏可能会加速化疗后的肿瘤复发。

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