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由TRPC4形成的离子通道。

Ionic channels formed by TRPC4.

作者信息

Cavalié A

机构信息

Pharmakologie und Toxikologie, Universität des Saarlandes, 66421 Homburg, Germany.

出版信息

Handb Exp Pharmacol. 2007(179):93-108. doi: 10.1007/978-3-540-34891-7_5.

Abstract

TRPC4 (transient receptor potential canonical 4) is a member of the TRPC sub-family and, within this sub-family, TRPC4 is most closely related to TRPC5. A number of splice variants of TRPC4 have been identified, whereby TRPC4alpha and TRPC4beta appear to be the most abundant isoforms in various species. TRPC4alpha comprises six transmembrane segments and the N- and C-termini are located intracellularly. Additionally, TRPC4alpha shares other structural features with members of the TRPC sub-group, including ankyrin-like repeats, coiled-coil regions and binding sites for calmodulin and IP3 receptors. Three calmodulin-binding domains have been identified in the C-terminus of TRPC4alpha. TRPC4beta lack 84 amino acids in the C-terminus, which correspond to the last two calmodulin-binding sites of TRPCalpha. The first and last calmodulin-binding domains of TRPC4alpha overlap with binding sites for the N- and C-termini of IP3 receptors. The ionic channels formed by TRPC4 appear to be Ca(2+)-permeable, although there is a considerably discrepancy in the degree of Ca2+ selectivity. Studies with mice lacking TRPC4 (TRPC4(-/-)) suggest an important role for TRPC4 in supporting Ca2+ entry. The defect in Ca2+ entry in TRPC4(-/-) mice appears to be associated with a reduction of the vasorelaxation of arteries, vascular permeability in the lung and neurotransmitter release from thalamic dendrites.

摘要

瞬时受体电位经典型4(TRPC4)是TRPC亚家族的成员,在该亚家族中,TRPC4与TRPC5关系最为密切。已鉴定出TRPC4的多种剪接变体,其中TRPC4α和TRPC4β似乎是各种物种中最丰富的异构体。TRPC4α由六个跨膜段组成,N端和C端位于细胞内。此外,TRPC4α与TRPC亚组的成员具有其他结构特征,包括锚蛋白样重复序列、卷曲螺旋区域以及钙调蛋白和IP3受体的结合位点。在TRPC4α的C端已鉴定出三个钙调蛋白结合结构域。TRPC4β在C端缺少84个氨基酸,这对应于TRPCα的最后两个钙调蛋白结合位点。TRPC4α的第一个和最后一个钙调蛋白结合结构域与IP3受体的N端和C端的结合位点重叠。由TRPC4形成的离子通道似乎对Ca(2+)具有通透性,尽管在Ca2+选择性程度上存在相当大的差异。对缺乏TRPC4(TRPC4(-/-))的小鼠的研究表明,TRPC4在支持Ca2+内流方面起重要作用。TRPC4(-/-)小鼠中Ca2+内流的缺陷似乎与动脉血管舒张、肺血管通透性以及丘脑树突中神经递质释放的减少有关。

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