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Inhibition of activated pericentromeric SINE/Alu repeat transcription in senescent human adult stem cells reinstates self-renewal

机译:抑制衰老的人类成体干细胞中活化的着丝粒体SINE / Alu重复转录可恢复自我更新

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摘要

Cellular aging is linked to deficiencies in efficient repair of DNA double strand breaks and authentic genome maintenance at the chromatin level. Aging poses a significant threat to adult stem cell function by triggering persistent DNA damage and ultimately cellular senescence. Senescence is often considered to be an irreversible process. Moreover, critical genomic regions engaged in persistent DNA damage accumulation are unknown. Here we report that 65% of naturally occurring repairable DNA damage in self-renewing adult stem cells occurs within transposable elements. Upregulation of Alu retrotransposon transcription upon ex vivo aging causes nuclear cytotoxicity associated with the formation of persistent DNA damage foci and loss of efficient DNA repair in pericentric chromatin. This occurs due to a failure to recruit of condensin I and cohesin complexes. Our results demonstrate that the cytotoxicity of induced Alu repeats is functionally relevant for the human adult stem cell aging. Stable suppression of Alu transcription can reverse the senescent phenotype, reinstating the cells' self-renewing properties and increasing their plasticity by altering so-called “master” pluripotency regulators.
机译:细胞衰老与DNA双链断裂的有效修复和染色质水平上可靠的基因组维持缺陷有关。衰老通过触发持续的DNA损伤并最终导致细胞衰老,对成体干细胞功能构成了重大威胁。衰老通常被认为是不可逆的过程。而且,参与持续的DNA损伤积累的关键基因组区域是未知的。在这里,我们报告自我更新的成年干细胞中自然发生的可修复DNA损伤的65%发生在转座因子内。离体衰老后Alu逆转录转座子转录的上调引起核细胞毒性,其与持久性DNA损伤灶的形成和周围核染色质中有效DNA修复的丧失有关。发生这种情况是由于未能募集浓缩素I和凝聚素复合物。我们的结果表明,诱导的Alu重复序列的细胞毒性与人类成人干细胞衰老在功能上相关。稳定抑制Alu转录可以逆转衰老表型,通过改变所谓的“主”多能性调节剂来恢复细胞的自我更新特性并增加其可塑性。

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