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前列腺素受体:亚型与信号传导

Prostanoid receptors: subtypes and signaling.

作者信息

Breyer R M, Bagdassarian C K, Myers S A, Breyer M D

机构信息

Division of Nephrology, Department of Medicine, Vanderbilt University, Nashville, Tennessee 37232, USA.

出版信息

Annu Rev Pharmacol Toxicol. 2001;41:661-90. doi: 10.1146/annurev.pharmtox.41.1.661.

Abstract

Cyclooxygenases metabolize arachidonate to five primary prostanoids: PGE(2), PGF(2 alpha), PGI(2), TxA(2), and PGD(2). These autacrine lipid mediators interact with specific members of a family of distinct G-protein-coupled prostanoid receptors, designated EP, FP, IP, TP, and DP, respectively. Each of these receptors has been cloned, expressed, and characterized. This family of eight prostanoid receptor complementary DNAs encodes seven transmembrane proteins which are typical of G-protein-coupled receptors and these receptors are distinguished by their ligand-binding profiles and the signal transduction pathways activated on ligand binding. Ligand-binding selectivity of these receptors is determined by both the transmembrane sequences and amino acid residues in the putative extracellular-loop regions. The selectivity of interaction between the receptors and G proteins appears to be mediated at least in part by the C-terminal tail region. Each of the EP(1), EP(3), FP, and TP receptors has alternative splice variants described that alter the coding sequence in the C-terminal intracellular tail region. The C-terminal variants modulate signal transduction, phosphorylation, and desensitization of these receptors, as well as altering agonist-independent constitutive activity.

摘要

环氧化酶将花生四烯酸代谢为五种主要的前列腺素

前列腺素E2(PGE2)、前列腺素F2α(PGF2α)、前列环素(PGI2)、血栓素A2(TxA2)和前列腺素D2(PGD2)。这些自分泌脂质介质分别与一类不同的G蛋白偶联前列腺素受体的特定成员相互作用,这些受体分别命名为EP、FP、IP、TP和DP。这些受体中的每一种都已被克隆、表达并进行了特性鉴定。这个由八个前列腺素受体互补DNA组成的家族编码七种跨膜蛋白,它们是G蛋白偶联受体的典型代表,这些受体通过其配体结合谱和配体结合后激活的信号转导途径来区分。这些受体的配体结合选择性由跨膜序列和假定的细胞外环区域中的氨基酸残基共同决定。受体与G蛋白之间相互作用的选择性似乎至少部分由C末端尾部区域介导。EP1、EP3、FP和TP受体中的每一种都有已描述的可变剪接变体,这些变体改变了C末端细胞内尾部区域的编码序列。C末端变体调节这些受体的信号转导、磷酸化和脱敏,以及改变激动剂非依赖性组成性活性。

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