【参考文献】
1. Tabula Muris Consortium. A single-cell transcriptomic atlas characterizes ageing tissues in the mouse. Nature 583, 590–595 (2020).
2. Albillos, A. et al. Cirrhosis-associated immune dysfunction. Nat. Rev. Gastroenterol. Hepatol. 19, 112–134 (2022).
3. Sheedfar, F. et al. Liver diseases and aging: friends or foes? Aging Cell 12, 950–954 (2013).
4. Hann, A. et al. Regulatory T-Cell Therapy in Liver Transplantation and Chronic Liver Disease. Front. Immunol. 12, 719954 (2021).
5. Wawman, R. E. et al. Regulatory T Cell Metabolism in the Hepatic Microenvironment. Front. Immunol. 8, 1889 (2018).
6. Yao, R. W. et al. Cellular functions of long noncoding RNAs. Nat. Cell Biol. 21, 542–551 (2019).
7. Wohlwend, M. et al. The exercise-induced long noncoding RNA CYTOR promotes fast-twitch myogenesis in aging. Sci. Transl. Med. 623, eabc7367 (2021).
8. Sousa-Franco, A. et al. LncRNAs regulating stemness in aging. Aging Cell 18, e12870 (2019).
9. Zhang, H. et al. LncRNA NEAT1 controls the lineage fates of BMSCs during skeletal aging by impairing mitochondrial function and pluripotency maintenance. Cell Death Differ. 29, 351–365 (2022).
10. Vendramin, R. et al. Non-coding RNAs: the dark side of nuclear-mitochondrial communication. EMBO J. 36, 1123–1133 (2017).
11. Jiang. R. et al. The long noncoding RNA lnc-EGFR stimulates T-regulatory cells differentiation thus promoting hepatocellular carcinoma immune evasion. Nat. Commun. 8, 15129 (2017).
12. Zemmour, D. et al. Flicr, a long noncoding RNA, modulates Foxp3 expression and autoimmunity. Proc. Natl. Acad. Sci. USA 114, E3472–E3480 (2017).
13. Gerriets, V. A. et al. Metabolic programming and PDHK1 control CD4+ T cell subsets and infammation. J. Clin. Invest. 125, 194–207 (2014).
14. Michalek, R. D. et al. Cutting edge: distinct glycolytic and lipid oxidative metabolic programs are essential for efector and regulatory CD4+ T cell subsets. J. Immunol. 186, 3299–3303 (2011).
15. Chang, L. S., Shi, Y. & Shenk, T. Adeno-associated virus P5 promoter contains an adenovirus E1A-inducible element and a binding site for the major late transcription factor. J. Virol. 63, 3479–3488 (1989).
16. Shi, Y., Lee, J. S. & Galvin, K. M. Everything you have ever wanted to know about Yin Yang 1..... Biochim. Biophys. Acta. 1332, F49–F66 (1997).
17. Gordon, S., Akopyan, G., Garban, H. & Bonavida, B. Transcription factor YY1: structure, function, and therapeutic implications in cancer biology. Oncogene 25, 1125–1142 (2006).