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PMID: 42244655 已发表 · epublish 英语

Cyclin D1 regulates the hepatic response to feeding: Evidence for non-cell cycle roles in the liver.

bioRxiv : the preprint server for biology ·2026-05-28

Wu H, Hauser JI, Yang N, Timchenko N, Klaers M, Salekeen R, Manivel JC, Abrahante JE, Laux L, Yousefzadeh MJ, Schonfeld MP, Tikhanovich I, Ikramuddin S, Monga SS, Adeyi OA, Niedernhofer LJ, Sen P, Gill MS, Albrecht JH

摘要

Prior studies have shown that cyclin D1 regulates diverse aspects of liver metabolism during cell cycle progression. Interestingly, this protein is induced in hepatocytes by feeding, but its function in modulating hepatic postprandial physiology is poorly characterized. The aim of this study was to evaluate the contribution of cyclin D1 to the hepatic response to feeding and to gain insight into its potential non-proliferative roles in other conditions. Mice with or without hepatocyte cyclin D1 (D1fl/fl or D1ΔHep) were fasted and refed a high-carbohydrate diet. Mouse and human liver in the setting of aging and MASLD were analyzed. The C. elegans model was used to evaluate the role of cyclin D1 (CYD-1) in response to overnutrition. Cyclin D1 regulated hepatic gene networks involved in glucose and lipid metabolism, protein synthesis, immune response, and other pathways after feeding. Induction of acute phase response proteins was markedly inhibited in D1ΔHep mice, which was associated with corresponding changes in histone acetylation on key genes. In aged liver, hepatocyte cyclin D1 was induced without associated proliferation; this was markedly pronounced in progeroid Ercc1-deficient mice. Cyclin D1 was upregulated in MASLD and diminished with successful treatment. CYD-1 was induced by overnutrition in the intestine of Caenorhabditis elegans (which performs metabolic functions similar to liver) and regulates key nutrient-responsive proteins. CYD-1 inhibition prolonged lifespan in this setting. Cyclin D1 regulates nutrient-mediated physiology in the liver and C. elegans, indicating that it has unexpected and highly conserved metabolic functions. Further study is warranted to define its role in hepatic disease and aging.

关键词
Acute-Phase Proteins CEBPB ChREBP Lcn2 NHR-49 PAI-1 Senescence-Associated Secretory Phenotype (SASP)
文献信息
期刊
bioRxiv : the preprint server for biology
期刊简称
bioRxiv
ISSN
2692-8205
发表日期
2026-05-28
语言
英语
国家/地区
United States
NLM ID
101680187
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