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离子依赖性门控的红藻氨酸受体。

Ion-dependent gating of kainate receptors.

机构信息

Department of Pharmacology & Therapeutics, McIntyre Medical Sciences Building, McGill University, Montreal, Québec, Canada H3A 1Y6.

出版信息

J Physiol. 2010 Jan 1;588(Pt 1):67-81. doi: 10.1113/jphysiol.2009.178863. Epub 2009 Oct 12.

Abstract

Ligand-gated ion channels are an important class of signalling protein that depend on small chemical neurotransmitters such as acetylcholine, l-glutamate, glycine and gamma-aminobutyrate for activation. Although numerous in number, neurotransmitter substances have always been thought to drive the receptor complex into the open state in much the same way and not rely substantially on other factors. However, recent work on kainate-type (KAR) ionotropic glutamate receptors (iGluRs) has identified an exception to this rule. Here, the activation process fails to occur unless external monovalent anions and cations are present. This absolute requirement of ions singles out KARs from all other ligand-gated ion channels, including closely related AMPA- and NMDA-type iGluR family members. The uniqueness of ion-dependent gating has earmarked this feature of KARs as a putative target for the development of selective ligands; a prospect all the more compelling with the recent elucidation of distinct anion and cation binding pockets. Despite these advances, much remains to be resolved. For example, it is still not clear how ion effects on KARs impacts glutamatergic transmission. I conclude by speculating that further analysis of ion-dependent gating may provide clues into how functionally diverse iGluRs families emerged by evolution. Consequently, ion-dependent gating of KARs looks set to continue to be a subject of topical inquiry well into the future.

摘要

配体门控离子通道是一类重要的信号蛋白,它们依赖于小分子化学神经递质,如乙酰胆碱、L-谷氨酸、甘氨酸和γ-氨基丁酸来激活。尽管数量众多,但一直以来,人们认为神经递质物质以大致相同的方式驱动受体复合物进入开放状态,而不依赖于其他因素。然而,最近对海人藻酸型(KAR)离子型谷氨酸受体(iGluR)的研究发现了一个例外。在这里,除非存在外部单价阴离子和阳离子,否则激活过程不会发生。这种对离子的绝对需求使 KAR 从所有其他配体门控离子通道中脱颖而出,包括密切相关的 AMPA 和 NMDA 型 iGluR 家族成员。离子依赖性门控的独特性使 KAR 成为开发选择性配体的潜在靶点;随着最近对独特的阴离子和阳离子结合口袋的阐明,这一前景更加引人注目。尽管取得了这些进展,但仍有许多问题亟待解决。例如,离子对 KAR 的影响如何影响谷氨酸能传递仍然不清楚。最后,我推测对离子依赖性门控的进一步分析可能为功能多样化的 iGluR 家族如何通过进化而出现提供线索。因此,KAR 的离子依赖性门控有望在未来很长一段时间内继续成为一个热门研究课题。

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