Institute of Molecular Biophysic, Florida State University, Tallahassee, USA.
Annu Rev Biophys. 2013;42:361-92. doi: 10.1146/annurev-biophys-083012-130326. Epub 2013 Mar 1.
The number of membrane protein structures in the Protein Data Bank is becoming significant and growing. Here, the transmembrane domain structures of the helical membrane proteins are evaluated to assess the influences of the membrane mimetic environments. Toward this goal, many of the biophysical properties of membranes are discussed and contrasted with those of the membrane mimetics commonly used for structure determination. Although the mimetic environments can perturb the protein structures to an extent that potentially gives rise to misinterpretation of functional mechanisms, there are also many structures that have a native-like appearance. From this assessment, an initial set of guidelines is proposed for distinguishing native-like from nonnative-like membrane protein structures. With experimental techniques for validation and computational methods for refinement and quality assessment and enhancement, there are good prospects for achieving native-like structures for these very important proteins.
蛋白质数据库中膜蛋白结构的数量变得越来越多。在这里,评估了螺旋膜蛋白的跨膜结构域结构,以评估膜模拟环境的影响。为此,讨论了许多膜的生物物理特性,并将其与常用于结构确定的膜模拟物进行了对比。尽管模拟环境可以在一定程度上扰乱蛋白质结构,从而可能导致对功能机制的误解,但也有许多结构具有类似天然的外观。从这种评估中,提出了一组用于区分天然样和非天然样膜蛋白结构的初步准则。通过实验技术验证和计算方法进行细化和质量评估和增强,对于这些非常重要的蛋白质,获得天然样结构具有很好的前景。