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Topology of Class A G Protein-Coupled Receptors: Insights Gained from Crystal Structures of Rhodopsins, Adrenergic and Adenosine Receptors

机译:A类G蛋白偶联受体的拓扑:从中获得的见解 视紫红质,肾上腺素和腺苷受体的晶体结构

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摘要

Biological membranes are densely packed with membrane proteins that occupy approximately half of their volume. In almost all cases, membrane proteins in the native state lack the higher-order symmetry required for their direct study by diffraction methods. Despite many technical difficulties, numerous crystal structures of detergent solubilized membrane proteins have been determined that illustrate their internal organization. Among such proteins, class A G protein-coupled receptors have become amenable to crystallization and high resolution X-ray diffraction analyses. The derived structures of native and engineered receptors not only provide insights into their molecular arrangements but also furnish a framework for designing and testing potential models of transformation from inactive to active receptor signaling states and for initiating rational drug design.
机译:生物膜被膜蛋白紧密堆积,占据了约一半的体积。在几乎所有情况下,天然状态的膜蛋白都缺乏通过衍射法直接研究所需的高阶对称性。尽管存在许多技术困难,但已确定洗涤剂增溶的膜蛋白的许多晶体结构可说明其内部结构。在此类蛋白质中,A类G蛋白偶联的受体已变得易于结晶和高分辨率X射线衍射分析。天然和工程受体的衍生结构不仅提供了对其分子排列的见解,而且还提供了一个框架,用于设计和测试从无活性到活性受体信号转导状态的潜在转化模型,以及启动合理的药物设计。

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