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RNA 周转率降低是细胞衰老的驱动因素。

Reduced RNA turnover as a driver of cellular senescence.

机构信息

Institut Pasteur, Centre National de la Recherche Scientifique (CNRS) UMR3738, Dpt Biologie du Développement et Cellules Souches, Unité de Régulation Epigénétique, Paris, France.

Sorbonne Université, Ecole Doctorale "Complexité du Vivant" (ED515), Paris, France.

出版信息

Life Sci Alliance. 2021 Jan 14;4(3). doi: 10.26508/lsa.202000809. Print 2021 Mar.

Abstract

Accumulation of senescent cells is an important contributor to chronic inflammation upon aging. The inflammatory phenotype of senescent cells was previously shown to be driven by cytoplasmic DNA. Here, we propose that cytoplasmic double-stranded RNA has a similar effect. We find that several cell types driven into senescence by different routes share an accumulation of long promoter RNAs and 3' gene extensions rich in retrotransposon sequences. Accordingly, these cells display increased expression of genes involved in response to double stranded RNA of viral origin downstream of the interferon pathway. The RNA accumulation is associated with evidence of reduced RNA turnover, including in some cases, reduced expression of RNA exosome subunits. Reciprocally, depletion of RNA exosome subunit EXOSC3 accelerated expression of multiple senescence markers. A senescence-like RNA accumulation was also observed in cells exposed to oxidative stress, an important trigger of cellular senescence. Altogether, we propose that in a subset of senescent cells, repeat-containing transcripts stabilized by oxidative stress or reduced RNA exosome activity participate in driving and maintaining the permanent inflammatory state characterizing cellular senescence.

摘要

衰老过程中衰老细胞的积累是慢性炎症的一个重要贡献者。先前的研究表明,衰老细胞的炎症表型是由细胞质 DNA 驱动的。在这里,我们提出细胞质双链 RNA 具有类似的作用。我们发现,几种通过不同途径被诱导衰老的细胞都积累了富含逆转录转座子序列的长启动子 RNA 和 3'基因延伸。因此,这些细胞表现出干扰素途径下游参与对源自病毒的双链 RNA 反应的基因表达增加。RNA 积累与 RNA 周转减少的证据有关,包括在某些情况下,RNA 外切酶亚基的表达减少。相反,RNA 外切酶亚基 EXOSC3 的消耗加速了多个衰老标志物的表达。在暴露于氧化应激的细胞中也观察到类似衰老的 RNA 积累,氧化应激是细胞衰老的一个重要触发因素。总之,我们提出在一部分衰老细胞中,由氧化应激或 RNA 外切酶活性降低稳定的重复序列转录本参与驱动和维持细胞衰老的永久性炎症状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeec/7812316/952388533482/LSA-2020-00809_Fig1.jpg

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