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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Crystallizing membrane proteins using lipidic bicelles
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Crystallizing membrane proteins using lipidic bicelles

机译:使用脂质双细胞结晶膜蛋白

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Crystallization of membrane proteins remains a significant challenge. For proteins resistant to the traditional approach of directly crystallizing from detergents, lipidic phase crystallization can be a powerful tool. Bicelles are an excellent medium for crystallizing membrane proteins in a lipidic environment. They can be described as bilayer discs formed by the mixture of a long-chain phospholipid and an amphiphile in an aqueous medium. Membrane proteins can be readily reconstituted into bicelles, where they are maintained in a native-like bilayer environment. Importantly, membrane proteins have been shown to be fully functional in bicelles under physiological conditions. Protein-bicelle mixtures can be manipulated with almost the same ease as detergent-solubilized membrane proteins, making bicelles compatible with standard equipment including high-throughput crystallization robots. A number of membrane proteins have now been successfully crystallized using the bicelle method, including bacteriorhodopsin, β2 adrenergic receptor, voltage-dependent anion channel, xanthorhodopsin and rhomboid protease. Because of the success with a variety of membrane proteins and the ease of implementation, bicelles should be a part of every membrane protein crystallographer's arsenal.
机译:膜蛋白的结晶仍然是一个重大挑战。对于抵抗从洗涤剂中直接结晶的传统方法的蛋白质,脂质相结晶可以成为强大的工具。 Bicelles是在脂质环境中结晶膜蛋白的极佳培养基。它们可以描述为在水介质中由长链磷脂和两亲物的混合物形成的双层盘。膜蛋白可以很容易地重组为双细胞,并保持在天然的双层环境中。重要的是,已证明在生理条件下,膜蛋白在双细胞中具有完全的功能。可以与去污剂增溶的膜蛋白几乎一样轻松地操作蛋白质-比克利斯混合物,从而使双细胞与标准设备兼容,包括高通量结晶机器人。现在已经使用比塞勒方法成功地结晶了许多膜蛋白,包括细菌视紫红质,β2肾上腺素能受体,电压依赖性阴离子通道,黄体视紫红质和菱形蛋白酶。由于成功地使用了多种膜蛋白,并且易于实施,因此,双晶细胞应该成为每个膜蛋白晶体学家的武器库的一部分。

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