Department of Life Sciences, University of Trieste, Trieste, Italy.
Institute of Experimental Endocrinology and Oncology "G. Salvatore" (IEOS), National Research Council (CNR), Naples, Italy.
Antioxid Redox Signal. 2024 Feb;40(4-6):236-249. doi: 10.1089/ars.2022.0190. Epub 2023 Apr 11.
Metabolic end products and intermediates can exert signaling functions as chemical sources for histone posttranslational modifications, which remodel chromatin and affect gene expression. Among them, lactic acid is responsible for histone lactylation, a recently discovered histone mark that occurs in high lactate conditions, such as those resulting from the Warburg effect in cancer cells. Late-breaking studies have advanced the knowledge on the mechanisms involved in histone lactylation, requiring independent nonenzyme and enzyme-dependent reactions, which is emerging as an important hallmark of cancer cells linking metabolic changes to gene expression reprogramming. In this study, we give an overview about this new epigenetic modification, focusing on its mechanism of action in tumors and tumor microenvironment. Further investigation on the competition mechanism between lactylation and acetylation, as well as on the mechanisms by which lactate fluctuation can control a specific gene set in a given tissue, is needed in the coming years to exploit new anticancer therapeutic approaches. 40, 236-249.
代谢终产物和中间产物可以作为组蛋白翻译后修饰的化学来源发挥信号作用,这些修饰可以重塑染色质并影响基因表达。其中,乳酸负责组蛋白的乳酰化,这是一种最近发现的组蛋白标记,发生在高乳酸条件下,如癌细胞中的瓦博格效应导致的条件下。最新研究进展深入了解了组蛋白乳酰化涉及的机制,需要独立的非酶和酶依赖性反应,这正在成为将代谢变化与基因表达重编程联系起来的癌细胞的一个重要特征。在这项研究中,我们概述了这种新的表观遗传修饰,重点介绍了其在肿瘤和肿瘤微环境中的作用机制。在未来几年中,需要进一步研究乳酰化和乙酰化之间的竞争机制,以及乳酸波动如何控制特定组织中特定基因集的机制,以开发新的抗癌治疗方法。Cell Metabolism, 40, 236-249.