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乳酸:一种多功能信号分子。

Lactate: a multifunctional signaling molecule.

作者信息

Lee Tae-Yoon

机构信息

Department of Microbiology, Yeungnam University College of Medicine, Daegu, Korea.

出版信息

Yeungnam Univ J Med. 2021 Jul;38(3):183-193. doi: 10.12701/yujm.2020.00892. Epub 2021 Feb 18.

Abstract

Since its discovery in 1780, lactate has long been misunderstood as a waste by-product of anaerobic glycolysis with multiple deleterious effects. Owing to the lactate shuttle concept introduced in the early 1980s, a paradigm shift began to occur. Increasing evidence indicates that lactate is a coordinator of whole-body metabolism. Lactate is not only a readily accessible fuel that is shuttled throughout the body but also a metabolic buffer that bridges glycolysis and oxidative phosphorylation between cells and intracellular compartments. Lactate also acts as a multifunctional signaling molecule through receptors expressed in various cells and tissues, resulting in diverse biological consequences including decreased lipolysis, immune regulation, anti-inflammation, wound healing, and enhanced exercise performance in association with the gut microbiome. Furthermore, lactate contributes to epigenetic gene regulation by lactylating lysine residues of histones, accounting for its key role in immune modulation and maintenance of homeostasis.

摘要

自1780年被发现以来,乳酸长期以来一直被误解为无氧糖酵解的有害副产物,具有多种有害影响。由于20世纪80年代初引入的乳酸穿梭概念,范式开始发生转变。越来越多的证据表明,乳酸是全身代谢的协调者。乳酸不仅是一种易于获取的燃料,可在全身穿梭,还是一种代谢缓冲剂,在细胞和细胞内区室之间架起糖酵解和氧化磷酸化的桥梁。乳酸还通过在各种细胞和组织中表达的受体充当多功能信号分子,产生多种生物学效应,包括减少脂肪分解、免疫调节、抗炎、伤口愈合,以及与肠道微生物群相关的运动表现增强。此外,乳酸通过使组蛋白的赖氨酸残基乳酰化来促进表观遗传基因调控,这解释了其在免疫调节和维持体内平衡中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3466/8225492/bc180c323a9a/yujm-2020-00892f1.jpg

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