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I1-咪唑啉受体及其细胞信号通路。

The I1-imidazoline receptor and its cellular signaling pathways.

作者信息

Ernsberger P

机构信息

Department of Nutrition, Case Western Reserve School of Medicine, Cleveland, Ohio 44106-4906, USA.

出版信息

Ann N Y Acad Sci. 1999 Jun 21;881:35-53. doi: 10.1111/j.1749-6632.1999.tb09339.x.

Abstract

Two primary questions are addressed. First, do I1-imidazoline binding sites fulfill all the essential criteria for identification as a true receptor? Second, what are the cellular signaling pathways coupled to this novel receptor? I1-imidazoline binding sites show specificity in binding assays, linkage to physiologic functions, appropriate anatomic, and cellular and subcellular localization. Most important, binding affinities correlate with functional drug responses. I1-imidazoline binding sites meet several additional criteria identified with functional receptors: they show physiologic regulation and endogenous ligands and, most crucially, are coupled to cellular signaling events. A series of studies have identified cellular events triggered by I1-imidazoline receptor occupancy. This receptor is not coupled to conventional pathways downstream of heterotrimeric G-proteins, such as activation or inhibition of adenylyl or guanylyl cyclases, stimulation of inositol phospholipid hydrolysis, or induction of rapid calcium fluxes. The I1-imidazoline receptor is coupled to choline phospholipid hydrolysis, leading to the generation of diacylglyceride, arachidonic acid, and eicosanoids. Additional cellular responses include inhibition of Na+/H+ exchange and induction of genes for catecholamine synthetic enzymes. The signaling pathways linked to the I1-imidazoline receptor are similar to those of the interleukin family, implying that I1-receptors may belong to the family of neurocytokine receptors.

摘要

本文探讨了两个主要问题。第一,I1-咪唑啉结合位点是否满足作为真正受体识别的所有基本标准?第二,与这种新型受体偶联的细胞信号通路是什么?I1-咪唑啉结合位点在结合试验中表现出特异性,与生理功能相关联,具有适当的解剖学、细胞和亚细胞定位。最重要的是,结合亲和力与功能性药物反应相关。I1-咪唑啉结合位点符合功能性受体确定的其他几个标准:它们表现出生理调节和内源性配体,最关键的是,与细胞信号事件偶联。一系列研究已经确定了I1-咪唑啉受体占据引发的细胞事件。该受体不与异源三聚体G蛋白下游的传统途径偶联,如腺苷酸或鸟苷酸环化酶的激活或抑制、肌醇磷脂水解的刺激或快速钙通量的诱导。I1-咪唑啉受体与胆碱磷脂水解偶联,导致二酰甘油、花生四烯酸和类花生酸的生成。其他细胞反应包括抑制Na+/H+交换和诱导儿茶酚胺合成酶基因。与I1-咪唑啉受体相关的信号通路与白细胞介素家族的相似,这意味着I1-受体可能属于神经细胞因子受体家族。

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