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The venus flytrap of periplasmic binding proteins: An ancient protein module present in multiple drug receptors

机译:周质结合蛋白的维纳斯捕蝇器:存在于多种药物受体中的古老蛋白模块

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摘要

Located between the inner and outer membranes of Gram-negative bacteria, periplasmic binding proteins (PBPs) scavenge or sense diverse nutrients in the environment by coupling to transporters or chemotaxis receptors in the inner membrane. Their three-dimensional structures have been deduced in atomic detail with the use of X-ray crystallography, both in the free and liganded state. PBPs consist of two large lobes that close around the bound ligand, resembling a Venus flytrap. This architecture is reiterated in transcriptional regulators, such as the lac repressors. In the process of evolution, genes encoding the PBPs have fused with genes for integral membrane proteins. Thus, diverse mammalian receptors contain extracellular ligand binding domains that are homologous to the PBPs; these include glutamate/glycine-gated ion channels such as the NMDA receptor, G protein-coupled receptors, including metabotropic glutamate, GABA-B, calcium sensing, and pheromone receptors, and atrial natriuretic peptide-guanylate cyclase receptors. Many of these receptors are promising drug targets. On the basis of homology to PBPs and a recently resolved crystal structure of the extracellular binding domain of a glutamate receptor ion channel, it is possible to construct three-dimensional models of their ligand binding domains. Together with the extensive information available on the mechanism of ligand binding to PBPs, such models can serve as a guide in drug discovery.
机译:周质结合蛋白(PBP)位于革兰氏阴性细菌的内膜和外膜之间,通过与内膜中的转运蛋白或趋化性受体偶联,清除或感知环境中的多种营养。通过使用X射线晶体学,无论是游离态还是配体态,都可以详细地推导出它们的三维结构。 PBP由围绕结合配体闭合的两个大叶组成,类似于金星捕蝇器。这种结构在诸如lac阻遏物的转录调节子中得以重申。在进化过程中,编码PBP的基因已与完整膜蛋白的基因融合。因此,多种哺乳动物受体含有与PBP同源的细胞外配体结合结构域。这些包括谷氨酸/甘氨酸门控离子通道,例如NMDA受体,G蛋白偶联受体,包括代谢型谷氨酸,GABA-B,钙敏感和信息素受体,以及心钠素和鸟苷酸环化酶受体。这些受体中的许多是有希望的药物靶标。基于与PBP的同源性和最近解析的谷氨酸受体离子通道的细胞外结合域的晶体结构,可以构建其配体结合域的三维模型。连同有关配体与PBP结合机理的大量可用信息,此类模型可作为药物发现的指南。

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