Xie Yumei, Hu Hongxia, Liu Maoting, Zhou Tingting, Cheng Xi, Huang Wei, Cao Ling
Department of Nephrology, Sichuan Clinical Research Center for Nephropathy, The Affiliated Hospital of Southwest Medical University, Luzhou, Sichuan, China.
Department of Endocrinology and Metabolism, Metabolic Vascular Diseases Key Laboratory of Sichuan Province, The Affiliated Hospital of Southwest Medical University, Luzhou, Sichuan, China.
Front Genet. 2022 Aug 23;13:949252. doi: 10.3389/fgene.2022.949252. eCollection 2022.
Whether under anaerobic or aerobic conditions, glycolysis results in production of lactate. Increasing evidence suggests that lactate serves as a multifunctional signaling molecule that develops non-metabolic activities in addition to serving as a key metabolite to link glycolysis and oxidative phosphorylation. Histone posttranslational modification patterns (HPTMs) are essential epigenetic processes controlling a variety of biological activities. Proteomics based on mass spectrometry (MS) has been used to progressively reveal new HPTMs. Recent discoveries of histone lactylation modification mediated by lactate and subsequent research demonstrating its involvement in cancer, inflammation, lung fibrosis, and other conditions suggest that it plays a significant role in immune regulation and homeostasis maintenance. This review provides a brief overview of the complicated control of histone lactylation modification in both pathological and physiological conditions.
无论在厌氧还是有氧条件下,糖酵解都会产生乳酸。越来越多的证据表明,乳酸作为一种多功能信号分子,除了作为连接糖酵解和氧化磷酸化的关键代谢物外,还具有非代谢活性。组蛋白翻译后修饰模式(HPTMs)是控制各种生物活性的重要表观遗传过程。基于质谱(MS)的蛋白质组学已被用于逐步揭示新的HPTMs。最近关于乳酸介导的组蛋白乳酰化修饰的发现以及随后表明其参与癌症、炎症、肺纤维化和其他病症的研究表明,它在免疫调节和体内稳态维持中发挥着重要作用。本文综述简要概述了病理和生理条件下组蛋白乳酰化修饰的复杂调控。