Beuming Thijs, Weinstein Harel
Department of Physiology and Biophysics, Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10021, USA.
Protein Eng Des Sel. 2005 Mar;18(3):119-25. doi: 10.1093/protein/gzi013. Epub 2005 Apr 8.
The availability of both EM and high-resolution crystallographic data for several membrane proteins (MPs) permits a detailed evaluation of the ability of molecular modeling techniques to complement EM data in the development of models of MPs. A protocol for this purpose is presented, consisting of (1) identifying transmembrane (TM) domains from sequence; (2) assigning buried and lipid-exposed faces of the TM domains; and (3) assembling the TM domains into a bundle, based on geometric restraints obtained from the EM data. The protocol is validated by predicting the structures of several 7- and 12-TM MPs to within 3-5 A r.m.s.d. from their crystal structures. The protocol is applied to generate a model of the oxalate transporter OxlT, for which a high-resolution structure is not yet available.
几种膜蛋白(MPs)的电子显微镜(EM)数据和高分辨率晶体学数据的可得性,使得对分子建模技术在MPs模型开发中补充EM数据能力的详细评估成为可能。本文提出了一个用于此目的的方案,包括:(1)从序列中识别跨膜(TM)结构域;(2)确定TM结构域的埋藏面和脂质暴露面;(3)基于从EM数据获得的几何约束,将TM结构域组装成束。通过预测几种7-TM和12-TM MPs的结构,使其与它们的晶体结构的均方根偏差(r.m.s.d.)在3-Å至5-Å范围内,对该方案进行了验证。该方案被应用于生成草酸盐转运蛋白OxlT的模型,目前尚无其高分辨率结构。