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PMID: 41512022 Published · ppublish English

Systematic identification of single transcription factor perturbations that drive cellular and tissue rejuvenation.

Sengstack J, Zheng J, Aghayev T, Bieri G, Mobaraki M, Lin J, Deng C, Villeda SA, Li H

Abstract

Cellular rejuvenation through transcriptional reprogramming is an exciting approach to counter aging. Using a fibroblast-based model of human cell aging and Perturb-seq screening, we developed a systematic approach to identify single transcription factor (TF) perturbations that promote rejuvenation without dedifferentiation. Overexpressing E2F3 or EZH2, and repressing STAT3 or ZFX, reversed cellular hallmarks of aging-increasing proliferation, proteostasis, and mitochondrial activity, while decreasing senescence. EZH2 overexpression in vivo rejuvenated livers in aged mice, reversing aging-associated gene expression profiles, decreasing steatosis and fibrosis, and improving glucose tolerance. Mechanistically, single TF perturbations led to convergent downstream transcriptional programs conserved in different aging and rejuvenation models. These results suggest a shared set of molecular requirements for cellular and tissue rejuvenation across species.

Keywords
Perturb-seq screening liver aging rejuvenation replicative aging
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2026-01-13
Language
English
Country/Region
United States
NLM ID
7505876
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