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A proteomic atlas of senescence-associated secretomes for aging biomarker development

PLoS Biology · 2020 · Vol. 18(1) · pp. e3000599–e3000599
Nathan BasistyAbhijit KaleOk Hee JeonChisaka KuehnemannTherese PayneChirag RaoAnja HoltzSamah ShahVagisha SharmaLuigi FerrucciJudith CampisiBirgit Schilling

Abstract

The senescence-associated secretory phenotype (SASP) has recently emerged as a driver of and promising therapeutic target for multiple age-related conditions, ranging from neurodegeneration to cancer. The complexity of the SASP, typically assessed by a few dozen secreted proteins, has been greatly underestimated, and a small set of factors cannot explain the diverse phenotypes it produces in vivo. Here, we present the "SASP Atlas," a comprehensive proteomic database of soluble proteins and exosomal cargo SASP factors originating from multiple senescence inducers and cell types. Each profile consists of hundreds of largely distinct proteins but also includes a subset of proteins elevated in all SASPs. Our analyses identify several candidate biomarkers of cellular senescence that overlap with aging markers in human plasma, including Growth/differentiation factor 15 (GDF15), stanniocalcin 1 (STC1), and serine protease inhibitors (SERPINs), which significantly correlated with age in plasma from a human cohort, the Baltimore Longitudinal Study of Aging (BLSA). Our findings will facilitate the identification of proteins characteristic of senescence-associated phenotypes and catalog potential senescence biomarkers to assess the burden, originating stimulus, and tissue of origin of senescent cells in vivo.

GDF15 and Related BiomarkersTelomeres, Telomerase, and SenescenceGenetics, Aging, and Longevity in Model OrganismsBiologySenescencePhenotypeNeurodegenerationBiomarkerProteomicsComputational biologyCell biologyGeneticsBioinformatics

MeSH terms

AgingCells, CulturedFemaleHumansPhenotypeBiomarkersCellular SenescenceProteomeDatabases, ProteinProteomicsExosomesSecretory Pathway

Funding

  • National Institutes of Health
  • National Institute on Aging
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Cited by
Cellular senescence in ageing: from mechanisms to therapeutic opportunities
Nature Reviews Molecular Cell Biology · 2020 · 2,076 citations
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