细胞生物学
生物
自分泌信号
糖酵解
信号转导
细胞信号
NAD+激酶
瓦博格效应
调节器
受体
生物化学
新陈代谢
基因
酶
作者
Di Wu,Kejia Zhang,Faheem Ahmed Khan,Qin Wu,Nuruliarizki Shinta Pandupuspitasari,Yuan Yan Tang,Kaifeng Guan,Fei Sun,Chunjie Huang
摘要
Abstract Cellular metabolites are ancient molecules with pleiotropic implications in health and disease. Beyond their cognate roles, they have signaling functions as the ligands for specific receptors and the precursors for epigenetic or posttranslational modifications. Lactate has long been recognized as a metabolic waste and fatigue product mainly produced from glycolytic metabolism. Recent evidence however suggests lactate is an unique molecule with diverse signaling attributes in orchestration of numerous biological processes, including tumor immunity and neuronal survival. The copious metabolic and non‐metabolic functions of lactate mediated by its bidirectional shuttle between cells or intracellular organelles lead to a phenotype called “lactormone.” Importantly, the mechanisms of lactate signaling, via acting as a molecular sensor and a regulator of NAD + metabolism and AMP‐activated protein kinase signaling, and via the newly identified lactate‐driven lactylation, have been discovered. Further, we include a brief discussion about the autocrine regulation of efferocytosis by lactate in Sertoli cells which favoraerobic glycolysis. By emphasizing a repertoire of the most recent discovered mechanisms of lactate signaling, this review will open tantalizing avenues for future investigations cracking the regulatory topology of lactate signaling covered in the veil of mystery.
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