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瞬时受体电位(TRP)通道的转运:通道功能的决定因素

Trafficking of TRP channels: determinants of channel function.

作者信息

Ambudkar I S

机构信息

Secretory Physiology Section, NIH, Building 10, Room 1N-113, Bethesda, MD 20892, USA.

出版信息

Handb Exp Pharmacol. 2007(179):541-57. doi: 10.1007/978-3-540-34891-7_32.

Abstract

Transient receptor potential (TRP) channels are members of a relatively newly described family of cation channels that display a wide range of properties and mechanisms of activation. The exact physiological function and regulation of most of these channels have not yet been conclusively determined. Studies over the past decade have revealed important features of the channels that contribute to their function. These include homomeric interactions between TRP monomers, selective heteromeric interactions within members of the same subfamily, interactions of TRPs with accessory proteins and assembly into macromolecular signaling complexes, and regulation within functionally distinct cellular microdomains. Further, distinct constitutive and regulated vesicular trafficking mechanisms have a critical role not only in controlling the surface expression of TRP channels but also their activation in response to stimuli. A number of cellular components such as cytoskeletal and scaffolding proteins also contribute to TRP channel trafficking. Thus, mechanisms involved in the assembly and trafficking of TRP channels control their plasma membrane expression and critically impact their function and regulation.

摘要

瞬时受体电位(TRP)通道是一个相对较新描述的阳离子通道家族的成员,它们表现出广泛的特性和激活机制。这些通道中大多数的确切生理功能和调节尚未最终确定。过去十年的研究揭示了这些通道有助于其功能的重要特征。这些特征包括TRP单体之间的同源相互作用、同一家族成员内的选择性异源相互作用、TRP与辅助蛋白的相互作用以及组装成大分子信号复合物,以及在功能不同的细胞微区内的调节。此外,不同的组成型和调节型囊泡运输机制不仅在控制TRP通道的表面表达方面起关键作用,而且在它们对刺激的激活方面也起关键作用。许多细胞成分,如细胞骨架和支架蛋白,也有助于TRP通道的运输。因此,参与TRP通道组装和运输的机制控制它们的质膜表达,并严重影响它们的功能和调节。

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