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Aging is associated with a systemic length-associated transcriptome imbalance.

Thomas StoegerRogan A GrantAlexandra C McQuattie-PimentelKishore R AnekallaSophia S LiuHeliodoro Tejedor-NavarroBenjamin David SingerHiam Abdala-ValenciaMichael SchwakeMarie-Pier TetreaultHarris PerlmanWilliam E BalchNavdeep S ChandelKaren M RidgeJacob I SznajderRichard I MorimotoAlexander V MisharinG R Scott BudingerLuís A Nunes Amaral
Published in: Nature aging (2022)
Aging is among the most important risk factors for morbidity and mortality. To contribute toward a molecular understanding of aging, we analyzed age-resolved transcriptomic data from multiple studies. Here, we show that transcript length alone explains most transcriptional changes observed with aging in mice and humans. We present three lines of evidence supporting the biological importance of the uncovered transcriptome imbalance. First, in vertebrates the length association primarily displays a lower relative abundance of long transcripts in aging. Second, eight antiaging interventions of the Interventions Testing Program of the National Institute on Aging can counter this length association. Third, we find that in humans and mice the genes with the longest transcripts enrich for genes reported to extend lifespan, whereas those with the shortest transcripts enrich for genes reported to shorten lifespan. Our study opens fundamental questions on aging and the organization of transcriptomes.
Keyphrases
  • genome wide
  • single cell
  • rna seq
  • gene expression
  • dna methylation
  • metabolic syndrome
  • adipose tissue
  • oxidative stress
  • wastewater treatment
  • deep learning
  • skeletal muscle
  • microbial community
  • heat shock