Hernández-Vega Ana M, García-Villegas Refugio, Rosenbaum Tamara
Departamento de Neurociencia Cognitiva, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Ciudad de México, 04510, Mexico.
Departamento de Fisiología, Biofísica y Neurociencias, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Av. Instituto Politécnico Nacional 2508, Ciudad de México, 07360, México.
Cell Calcium. 2024 Dec;124:102972. doi: 10.1016/j.ceca.2024.102972. Epub 2024 Nov 22.
The transient receptor potential vanilloid 4 (TRPV4) ion channel is a ubiquitously expressed Ca-permeable ion channel that controls intracellular calcium ([Ca]) homeostasis in various types of cells. The physiological roles for TRPV4 are tissue specific and the mechanisms behind this specificity remain mostly unclarified. It is noteworthy that mutations in the TRPV4 channel have been associated to a broad spectrum of congenital diseases, with most of these mutations mainly resulting in gain-of-function. Mutations have been identified in human patients showing a variety of phenotypes and symptoms, mostly related to skeletal and neuromuscular disorders. Since TRPV4 is so widely expressed throughout the body, it comes as no surprise that the literature is growing in evidence linking this protein to malfunction in systems other than the skeletal and neuromuscular. In this review, we summarize the expression patterns of TRPV4 in several tissues and highlight findings of recent studies that address critical structural and functional features of this channel, particularly focusing on its interactions and signaling pathways related to Ca entry. Moreover, we discuss the roles of TRPV4 mutations in some diseases and pinpoint some of the mechanisms underlying pathological states where TRPV4's malfunction is prominent.
瞬时受体电位香草酸亚型4(TRPV4)离子通道是一种广泛表达的钙通透性离子通道,可控制多种类型细胞内的钙([Ca])稳态。TRPV4的生理作用具有组织特异性,而这种特异性背后的机制大多仍不清楚。值得注意的是,TRPV4通道的突变与多种先天性疾病相关,其中大多数突变主要导致功能获得。在表现出各种表型和症状的人类患者中已鉴定出突变,这些表型和症状大多与骨骼和神经肌肉疾病有关。由于TRPV4在全身广泛表达,因此文献中越来越多的证据将该蛋白与骨骼和神经肌肉以外的系统功能障碍联系起来也就不足为奇了。在这篇综述中,我们总结了TRPV4在几种组织中的表达模式,并强调了近期研究的发现,这些研究涉及该通道的关键结构和功能特征,特别关注其与钙内流相关的相互作用和信号通路。此外,我们讨论了TRPV4突变在某些疾病中的作用,并指出了TRPV4功能障碍突出的病理状态背后的一些机制。