MRC Laboratory of Molecular Biology, Cambridge, UK.
Q Rev Biophys. 2010 Feb;43(1):65-158. doi: 10.1017/S0033583510000041.
In reviewing the structures of membrane proteins determined up to the end of 2009, we present in words and pictures the most informative examples from each family. We group the structures together according to their function and architecture to provide an overview of the major principles and variations on the most common themes. The first structures, determined 20 years ago, were those of naturally abundant proteins with limited conformational variability, and each membrane protein structure determined was a major landmark. With the advent of complete genome sequences and efficient expression systems, there has been an explosion in the rate of membrane protein structure determination, with many classes represented. New structures are published every month and more than 150 unique membrane protein structures have been determined. This review analyses the reasons for this success, discusses the challenges that still lie ahead, and presents a concise summary of the key achievements with illustrated examples selected from each class.
在回顾截至 2009 年底确定的膜蛋白结构时,我们用文字和图片呈现了每个家族中最具信息量的例子。我们根据功能和结构将这些结构分组,以提供对最常见主题的主要原则和变化的概述。20 年前确定的第一批结构是那些构象变异性有限的天然丰富蛋白,并且每个确定的膜蛋白结构都是一个重要的里程碑。随着完整基因组序列和高效表达系统的出现,膜蛋白结构测定的速度呈爆炸式增长,许多类都有代表。新的结构每月都会发表,已经确定了 150 多种独特的膜蛋白结构。本综述分析了取得这一成功的原因,讨论了仍然存在的挑战,并通过从每个类中选择的带有说明性示例的简明总结,介绍了关键成果。