Walther-Straub Institute of Pharmacology and Toxicology, LMU Munich, Munich, Germany.
Renal Division, Department of Medicine, Medical Center, Faculty of Medicine, University of Freiburg, Freiburg, Germany.
Nat Rev Nephrol. 2024 Mar;20(3):175-187. doi: 10.1038/s41581-023-00777-y. Epub 2023 Oct 18.
Different cell channels and transporters tightly regulate cytoplasmic levels and the intraorganelle distribution of cations. Perturbations in these processes lead to human diseases that are frequently associated with kidney impairment. The family of melastatin-related transient receptor potential (TRPM) channels, which has eight members in mammals (TRPM1-TRPM8), includes ion channels that are highly permeable to divalent cations, such as Ca, Mg and Zn (TRPM1, TRPM3, TRPM6 and TRPM7), non-selective cation channels (TRPM2 and TRPM8) and monovalent cation-selective channels (TRPM4 and TRPM5). Three family members contain an enzymatic protein moiety: TRPM6 and TRPM7 are fused to α-kinase domains, whereas TRPM2 is linked to an ADP-ribose-binding NUDT9 homology domain. TRPM channels also function as crucial cellular sensors involved in many physiological processes, including mineral homeostasis, blood pressure, cardiac rhythm and immunity, as well as photoreception, taste reception and thermoreception. TRPM channels are abundantly expressed in the kidney. Mutations in TRPM genes cause several inherited human diseases, and preclinical studies in animal models of human disease have highlighted TRPM channels as promising new therapeutic targets. Here, we provide an overview of this rapidly evolving research area and delineate the emerging role of TRPM channels in kidney pathophysiology.
不同的细胞通道和转运蛋白严格调节细胞质水平和细胞器内阳离子的分布。这些过程的紊乱会导致人类疾病,这些疾病通常与肾脏损伤有关。瞬时受体电位 (TRP) 通道家族中有 8 个成员(TRPM1-TRPM8),包括对二价阳离子(如 Ca、Mg 和 Zn)具有高通透性的离子通道(TRPM1、TRPM3、TRPM6 和 TRPM7)、非选择性阳离子通道(TRPM2 和 TRPM8)和单价阳离子选择性通道(TRPM4 和 TRPM5)。三个家族成员包含酶蛋白部分:TRPM6 和 TRPM7 与α-激酶结构域融合,而 TRPM2 与 ADP-核糖结合 NUDT9 同源结构域相连。TRPM 通道还作为涉及许多生理过程的重要细胞传感器发挥作用,包括矿物质稳态、血压、心律和免疫,以及光感受器、味觉感受器和温度感受器。TRPM 通道在肾脏中大量表达。TRPM 基因的突变导致几种遗传性人类疾病,并且人类疾病动物模型的临床前研究强调了 TRPM 通道作为有前途的新治疗靶点的作用。在这里,我们概述了这一快速发展的研究领域,并阐述了 TRPM 通道在肾脏病理生理学中的新兴作用。