Alonso-Carbajo Lucía, Kecskes Miklos, Jacobs Griet, Pironet Andy, Syam Ninda, Talavera Karel, Vennekens Rudi
Laboratory of Ion Channel Research, TRP Research Platform Leuven (TRPLe), Department of Cellular and Molecular Medicine, KU Leuven, 3000 Leuven, Belgium.
Laboratory of Ion Channel Research, TRP Research Platform Leuven (TRPLe), Department of Cellular and Molecular Medicine, KU Leuven, 3000 Leuven, Belgium.
Cell Calcium. 2017 Sep;66:48-61. doi: 10.1016/j.ceca.2017.06.004. Epub 2017 Jun 15.
The human TRP protein family comprises a family of 27 cation channels with diverse permeation and gating properties. The common theme is that they are very important regulators of intracellular Ca signaling in diverse cell types, either by providing a Ca influx pathway, or by depolarising the membrane potential, which on one hand triggers the activation of voltage-gated Ca channels, and on the other limits the driving force for Ca entry. Here we focus on the role of these TRP channels in vascular smooth muscle and cardiac striated muscle. We give an overview of highlights from the recent literature, and highlight the important and diverse roles of TRP channels in the pathophysiology of the cardiovascular system. The discovery of the superfamily of Transient Receptor Potential (TRP) channels has significantly enhanced our knowledge of multiple signal transduction mechanisms in cardiac muscle and vascular smooth muscle cells (VSMC). In recent years, multiple studies have provided evidence for the involvement of these channels, not only in the regulation of contraction, but also in cell proliferation and remodeling in pathological conditions. The mammalian family of TRP cation channels is composed by 28 genes which can be divided into 6 subfamilies groups based on sequence similarity: TRPC (Canonical), TRPM (Melastatin), TRPML (Mucolipins), TRPV (Vanilloid), TRPP (Policystin) and TRPA (Ankyrin-rich protein). Functional TRP channels are believed to form four-unit complexes in the plasma, each of them expressed with six transmembrane domain and intracellular N and C termini. Here we review the current knowledge on the expression of TRP channels in both muscle types, and discuss their functional properties and role in physiological and pathophysiological processes.
人类瞬时受体电位(TRP)蛋白家族由27种阳离子通道组成,这些通道具有多样的通透和门控特性。其共同特点是,它们是多种细胞类型中细胞内钙信号的重要调节因子,要么通过提供钙内流途径,要么通过使膜电位去极化,一方面触发电压门控钙通道的激活,另一方面限制钙进入的驱动力。在这里,我们聚焦于这些TRP通道在血管平滑肌和心脏横纹肌中的作用。我们概述了近期文献中的要点,并强调了TRP通道在心血管系统病理生理学中的重要且多样的作用。瞬时受体电位(TRP)通道超家族的发现显著增进了我们对心肌和血管平滑肌细胞(VSMC)中多种信号转导机制的认识。近年来,多项研究提供了证据,表明这些通道不仅参与收缩调节,还在病理状态下的细胞增殖和重塑中发挥作用。哺乳动物的TRP阳离子通道家族由28个基因组成,根据序列相似性可分为6个亚家族组:TRPC(典型型)、TRPM(褪黑素型)、TRPML(黏脂质型)、TRPV(香草素型)、TRPP(多囊蛋白型)和TRPA(富含锚蛋白型)。功能性TRP通道被认为在质膜中形成四聚体复合物,每个复合物由六个跨膜结构域以及细胞内的N端和C端组成。在这里,我们综述了目前关于TRP通道在这两种肌肉类型中表达的知识,并讨论它们在生理和病理生理过程中的功能特性及作用。