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疾病中的瞬时受体电位通道

TRP channels in disease.

作者信息

Nilius Bernd, Voets Thomas, Peters John

机构信息

Department of Physiology, Campus Gasthuisberg Katholieke Universiteit, Leuven, Belgium.

出版信息

Sci STKE. 2005 Aug 2;2005(295):re8. doi: 10.1126/stke.2952005re8.

Abstract

The mammalian TRP (transient receptor potential) family consists of six main subfamilies termed the TRPC (canonical), TRPV (vanilloid), TRPM (melastatin), TRPP (polycystin), TRPML (mucolipin), and TRPA (ankyrin) groups. These subfamilies encompass 28 ion channels that function as diverse cellular sensors. All of the channels are permeable to monovalent cations, and most are also permeable to Ca(2+). There are strong indications that TRP channels are involved in many diseases. At this point, four channelopathies have been identified in which a defect in a TRP channel-encoding gene is the direct cause of disease. TRPs are also involved in some systemic diseases because of their role as receptors for irritants, inflammation products, and xenobiotic toxins. Other indications of the involvement of TRPs in several diseases come from correlations between the levels of channel expression and disease symptoms or from the mapping of TRP-encoding genes to susceptible chromosome regions. Finally, the phenotypes of TRP knockout mice and other transgenic models allow a degree of extrapolation to human diseases. We present an overview of current knowledge about the role of TRP channels in human disease and highlight some TRP "suspects" for which a role in disease can be anticipated. An understanding of the genetics of disease may lead to the development of targeted new therapies.

摘要

哺乳动物的瞬时受体电位(TRP)家族由六个主要亚家族组成,分别称为TRPC(典型)、TRPV(香草酸)、TRPM(褪黑素)、TRPP(多囊蛋白)、TRPML(粘脂蛋白)和TRPA(锚蛋白)组。这些亚家族包含28个离子通道,它们作为多种细胞传感器发挥作用。所有这些通道都对单价阳离子有通透性,并且大多数对Ca(2+)也有通透性。有充分迹象表明TRP通道与许多疾病有关。目前,已经确定了四种通道病,其中TRP通道编码基因的缺陷是疾病的直接原因。由于TRP作为刺激物、炎症产物和外源性毒素的受体,它们也参与一些全身性疾病。TRP与多种疾病相关的其他迹象来自通道表达水平与疾病症状之间的相关性,或者来自TRP编码基因在易感染色体区域的定位。最后,TRP基因敲除小鼠和其他转基因模型的表型使得能够在一定程度上推断人类疾病。我们概述了关于TRP通道在人类疾病中作用的当前知识,并强调了一些有望在疾病中发挥作用的TRP“嫌疑对象”。对疾病遗传学的理解可能会导致开发有针对性的新疗法。

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