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PMID: 42624917 已发表 · aheadofprint 英语

Inhibiting cyclin D1-CDK6 suppresses senescence-associated inflammatory gene expression and age-related functional decline.

Nature aging ·2026-08-20

Rajesh A, Havas AP, Arnold R, Lande K, Lei X, Li KY, Gandhi A, Franco AC, Woo SH, Lagnado AB, Liou A, Evensen KG, Laux L, Klaers M, Kircher J, Rad AN, Tanaka H, Teneche MG, Alcaraz M, Miller KN, Yao Z, Zaretski S, Mamde S, Yang Q, Proulx J, Davis A, Haddadin L, Macip CC, Li B, Dasgupta N, Chua ZM, Stamenkovic C, Guarnaccia G, Tanizawa H, Miciano C, Smoot E, Wang A, Porritt RA, Sacco A, Noma KI, Albrecht JH, Niedernhofer LJ, Passos JF, Williams AE, Ren B, Yip KY, Adams PD

摘要

Cellular senescence contributes to aging and age-related diseases by driving chronic inflammation through the senescence-associated secretory phenotype (SASP), including interferon-stimulated genes (ISGs). Here we confirm and extend previous observations that cyclin D1 (CCND1), a key cell cycle regulator, is paradoxically upregulated across models of nonproliferating senescent cells. We show that CCND1 and its kinase partner CDK6 drive SASP and ISG expression in senescent cells by promoting DNA damage accumulation. This leads to the formation of cytoplasmic chromatin fragments that activate pro-inflammatory cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) signaling. In aged mouse livers, senescent hepatocytes show increased Ccnd1 expression. Hepatocyte-specific Ccnd1 knockout or treatment with the clinical grade CDK4/6 inhibitor palbociclib reduces DNA damage and ISGs in aged mouse liver. Further, palbociclib suppresses frailty and improves physical performance of aged mice. These findings demonstrate a role for CCND1/CDK6 in regulating DNA damage and inflammation in senescence and aging, highlighting it as a promising target for therapeutic repurposing.

文献信息
期刊
Nature aging
期刊简称
Nat Aging
ISSN
2662-8465
发表日期
2026-08-20
语言
英语
国家/地区
United States
NLM ID
101773306
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