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用于结构测定的膜蛋白结晶:脂质中间相的应用。

Crystallizing membrane proteins for structure determination: use of lipidic mesophases.

作者信息

Caffrey Martin

机构信息

University of Limerick, Limerick, Ireland.

出版信息

Annu Rev Biophys. 2009;38:29-51. doi: 10.1146/annurev.biophys.050708.133655.

Abstract

The principal route to determine the structure and the function and interactions of membrane proteins is via macromolecular crystallography. For macromolecular crystallography to be successful, structure-quality crystals of the target protein must be forthcoming, and crystallogenesis represents a major challenge. Several techniques are employed to crystallize membrane proteins, and the bulk of these techniques make direct use of solubilized protein-surfactant complexes by the more traditional, so-called in surfo methods. An alternative in meso approach, which employs a bicontinuous lipidic mesophase, has emerged as a method with considerable promise in part because it involves reconstitution of the solubilized protein back into a stabilizing and organizing lipid bilayer reservoir as a prelude to crystallogenesis. A hypothesis for how the method works at the molecular level and experimental evidence in support of the proposal are reviewed here. The latest advances, successes, and challenges associated with the method are described.

摘要

确定膜蛋白结构、功能及相互作用的主要途径是通过大分子晶体学。要使大分子晶体学取得成功,必须获得目标蛋白质的高质量结构晶体,而晶体生成是一项重大挑战。有几种技术用于膜蛋白结晶,其中大部分技术通过更传统的所谓“in surfo”方法直接利用溶解的蛋白质 - 表面活性剂复合物。一种采用双连续脂质中间相的“in meso”替代方法已成为一种颇具前景的方法,部分原因是它涉及将溶解的蛋白质重新构建到稳定且有序的脂质双层储库中,作为晶体生成的前奏。本文综述了该方法在分子水平上的作用机制假说以及支持该假说的实验证据。还描述了与该方法相关的最新进展、成功之处和挑战。

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