生物
免疫系统
平衡
染色质
长非编码RNA
功能(生物学)
免疫学
核糖核酸
细胞生物学
癌症研究
基因
遗传学
作者
Chenbo Ding,Zhibin Yu,Esen Sefik,Jing Zhou,Eleanna Kaffe,Gaoyang Wang,Bin Li,Richard A. Flavell,Weiguo Hu,Youqiong Ye,Huabing Li
出处
期刊:Nature Aging
日期:2023-06-05
卷期号:3 (7): 813-828
被引量:17
标识
DOI:10.1038/s43587-023-00428-8
摘要
Regulatory T (Treg) cells modulate several aging-related liver diseases. However, the molecular mechanisms regulating Treg function in this context are unknown. Here we identified a long noncoding RNA, Altre (aging liver Treg-expressed non-protein-coding RNA), which was specifically expressed in the nucleus of Treg cells and increased with aging. Treg-specific deletion of Altre did not affect Treg homeostasis and function in young mice but caused Treg metabolic dysfunction, inflammatory liver microenvironment, liver fibrosis and liver cancer in aged mice. Depletion of Altre reduced Treg mitochondrial integrity and respiratory capacity, and induced reactive oxygen species accumulation, thus increasing intrahepatic Treg apoptosis in aged mice. Moreover, lipidomic analysis identified a specific lipid species driving Treg aging and apoptosis in the aging liver microenvironment. Mechanistically, Altre interacts with Yin Yang 1 to orchestrate its occupation on chromatin, thereby regulating the expression of a group of mitochondrial genes, and maintaining optimal mitochondrial function and Treg fitness in the liver of aged mice. In conclusion, the Treg-specific nuclear long noncoding RNA Altre maintains the immune-metabolic homeostasis of the aged liver through Yin Yang 1-regulated optimal mitochondrial function and the Treg-sustained liver immune microenvironment. Thus, Altre is a potential therapeutic target for the treatment of liver diseases affecting older adults. Regulatory T (Treg) cells have an important role in age-related diseases and inflammation; however, the underlying mechanisms are not fully understood. Li et al. identify a Treg-specific long noncoding RNA, Altre, that binds Yin Yang 1 to regulate liver Treg mitochondrial function in old mice. Altre deletion accelerates aging-associated liver pathogenesis.
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