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TRP 通道的机械转导:一般概念及其在脉管系统中的特定作用。

Mechanotransduction by TRP channels: general concepts and specific role in the vasculature.

机构信息

The Keenan Research Centre, Li Ka Shing Knowledge Institute, St. Michael's Hospital, 30 Bond Street, Bond Wing 2-021, Toronto, ON, M5B 1W8, Canada.

出版信息

Cell Biochem Biophys. 2010;56(1):1-18. doi: 10.1007/s12013-009-9067-2.

Abstract

Transient receptor potential (TRP) ion channel superfamily is involved in sensing and transmission of a broad variety of external or internal stimuli, including but not limited to mechanical stress. Based on homology analysis, genetic and molecular studies have recently identified TRP channels in different tissues, comprising blood vessels. In invertebrates, many TRP channels including five TRPV channels identified in Caenorhabditis elegans and two in Drosophila have been implicated in mechanosensory behaviors as molecular basis of volume regulation, hearing and touch sensitivity. Consistently, in mammals many TRP family members such as TRPC1, TRPC3, TRPC6, TRPM4, TRPM7, TRPN1, TRPA1, TRPY1, TRPP1, TRPP2, and notably, TRPV1, TPRV2 as well as TRPV4 have been reported to be involved in mechanotransduction. This review summarizes recent and at times controversial findings on the role and regulation of TRP channels in mechanotransduction. Specifically, we highlight the relevance of TRPV channels in vascular regulation and focus on TRPV4 in the vascular system of the lung, which is constantly exposed to a unique combination of circumferential and longitudinal strains. In light of our observation in intact pulmonary microvessels that mechanical stress induced Ca(2+) signaling in endothelial cells is closely related to TRPV4 activity, we postulate that TRPV4 plays a critical role in lung vascular mechanotransduction. The progress in this rapidly expanding field may allow for the identification of new molecular targets and the development of new therapeutic approaches in a number of intractable diseases related to mechanical stress.

摘要

瞬时受体电位 (TRP) 离子通道超家族参与感知和传递广泛的外部或内部刺激,包括但不限于机械应激。基于同源性分析、遗传和分子研究,最近已在不同组织中鉴定出 TRP 通道,包括血管。在无脊椎动物中,许多 TRP 通道,包括在秀丽隐杆线虫中鉴定出的五个 TRPV 通道和在果蝇中鉴定出的两个,已被牵涉到机械感觉行为中,作为体积调节、听觉和触觉敏感性的分子基础。一致地,在哺乳动物中,许多 TRP 家族成员,如 TRPC1、TRPC3、TRPC6、TRPM4、TRPM7、TRPN1、TRPA1、TRPY1、TRPP1、TRPP2,以及特别地 TRPV1、TRPV2 以及 TRPV4,已被报道参与机械转导。本综述总结了 TRP 通道在机械转导中的作用和调节的最新和有时有争议的发现。具体而言,我们强调 TRPV 通道在血管调节中的相关性,并关注肺血管系统中的 TRPV4,肺血管系统不断暴露于周向和纵向应变的独特组合中。鉴于我们在完整的肺微血管中观察到的机械应激诱导内皮细胞 Ca(2+)信号与 TRPV4 活性密切相关,我们假设 TRPV4 在肺血管机械转导中发挥关键作用。这个快速扩展的领域的进展可能允许在许多与机械应激相关的棘手疾病中识别新的分子靶标和开发新的治疗方法。

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