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一种使用极性拼图预测跨膜螺旋构型的三角形晶格模型。

A triangle lattice model that predicts transmembrane helix configuration using a polar jigsaw puzzle.

作者信息

Hirokawa T, Uechi J, Sasamoto H, Suwa M, Mitaku S

机构信息

Department of Biotechnology, Tokyo University of Agriculture and Technology, Nakacho, Koganei, Tokyo 184-8588, Japan.

出版信息

Protein Eng. 2000 Nov;13(11):771-8. doi: 10.1093/protein/13.11.771.

Abstract

We developed a method of predicting the tertiary structures of seven transmembrane helical proteins in triangle lattice models, assuming that the configuration of helices is stabilized by polar interactions. Triangle lattice models having 12 or 11 nearest neighbor pairs were used as general templates of a seven-helix system, then the orientation angles of all helices were varied at intervals of 15 degrees. The polar interaction energy for all possible positions of each helix was estimated using the calculated polar indices of transmembrane helices. An automated system was constructed and applied to bacteriorhodopsin, a typical membrane protein with seven transmembrane helices. The predicted optimal and actual structures were similar. The top 100 predicted helical configurations indicated that the helix-triangle, CFG, occurred at the highest frequency. In fact, this helix-triangle of bacteriorhodopsin forms an active proton-pumping site, suggesting that the present method can identify functionally important helices in membrane proteins. The possibility of studying the structure change of bacteriorhodopsin during the functional process by this method is discussed, and may serve to explain the experimental structures of photointermediate states.

摘要

我们开发了一种在三角形晶格模型中预测七跨膜螺旋蛋白三级结构的方法,假设螺旋的构象通过极性相互作用得以稳定。具有12或11个最近邻对的三角形晶格模型被用作七螺旋系统的通用模板,然后所有螺旋的取向角以15度的间隔变化。利用计算得到的跨膜螺旋的极性指数,估计每个螺旋所有可能位置的极性相互作用能。构建了一个自动化系统,并将其应用于细菌视紫红质,一种典型的具有七个跨膜螺旋的膜蛋白。预测的最佳结构与实际结构相似。前100个预测的螺旋构象表明,螺旋 - 三角形(CFG)出现的频率最高。事实上,细菌视紫红质的这种螺旋 - 三角形形成了一个活跃的质子泵浦位点,这表明本方法可以识别膜蛋白中功能重要的螺旋。讨论了用这种方法研究细菌视紫红质在功能过程中结构变化的可能性,这可能有助于解释光中间体状态的实验结构。

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