Reduced RNA turnover as a driver of cellular senescence.

Life Sci Alliance

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

Published: March 2021

AI Article Synopsis

  • The buildup of senescent cells contributes to chronic inflammation as we age, and this process is influenced by cytoplasmic double-stranded RNA, similar to the previously known effects of cytoplasmic DNA.
  • Researchers found that various cell types in senescence have high levels of long promoter RNAs and retrotransposon sequences, leading to increased activity of genes responsive to viral double-stranded RNA via the interferon pathway.
  • Evidence shows that lower RNA turnover, possibly due to decreased expression of RNA exosome components, exacerbates senescence markers, with oxidative stress also playing a role in this senescence-like RNA accumulation and persistent inflammation.

Article 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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7812316PMC
http://dx.doi.org/10.26508/lsa.202000809DOI Listing

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