蛋白质稳态
再生(生物学)
生物
细胞生物学
平衡
多胺
肠上皮
上皮
蛋白质组学
生物化学
遗传学
基因
作者
Alberto E. Minetti,Omid Omrani,Christiane Brenner,Gabriele Allies,Shinya Imada,Jonas Rösler,Saleh Khawaled,Feyza Cansiz,Sven W. Meckelmann,Nadja Gebert,Ivonne Heinze,Jing Lü,Katrin Spengler,Mahdi Rasa,Regine Heller,Ömer H. Yilmaz,Alpaslan Tasdogan,Francesco Neri,Alessandro Ori
标识
DOI:10.1101/2024.07.26.605278
摘要
Abstract Aging hampers the regenerative potential of intestinal epithelium across species including humans, yet the underlying causes remain elusive. Here, using proteomic and metabolomic profiling of intestinal tissues together with functional assays, we characterized the temporal dynamics of regeneration following injury induced by 5-fluorouracil, a commonly used chemotherapeutic agent. Comparison of regeneration dynamics in mice of different ages revealed the emergence of a proteostasis stress signature and increased levels of polyamines following injury exclusively in old epithelia. Mechanistically, we show that delayed regeneration is an intrinsic feature of aged epithelial cells that display reduced protein synthesis and accumulation of ubiquitylated proteins. Notably, dietary restriction followed by re-feeding prior to injury increases polyamine pathway activation, enhances protein synthesis, and restores the regenerative capacity of aged intestines. Our findings highlight promising epithelial targets for interventions aimed at tackling the decline in tissue repair mechanisms associated with aging.
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