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跨膜螺旋蛋白的结构决定因素。

Structural determinants of transmembrane helical proteins.

机构信息

Department of Biochemistry, George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv, Israel.

出版信息

Structure. 2009 Aug 12;17(8):1092-103. doi: 10.1016/j.str.2009.06.009.

Abstract

We identify a structural feature of transmembrane helical proteins that restricts their conformational space and suggests a new way of understanding the construction and stability of their native states. We show that five kinds of well-known specific favorable interhelical interactions (hydrogen bonds, aromatic interactions, salt bridges, and two interactions from packing motifs) precisely determine the packing of the transmembrane helices in 15 diverse proteins. To show this, we iteratively reassemble the helix bundle of each protein using only these interactions, generic interaction geometries, and individual helix backbone conformations. On average, the representative set of rebuilt structures best satisfying the constraints imposed by the five types of interhelical interactions has an average Calpha root-mean-square deviation from the native of 1.03 A. Implications for protein folding, structure and motion prediction, modeling, and design are discussed.

摘要

我们确定了跨膜螺旋蛋白的一种结构特征,该特征限制了它们的构象空间,并为理解其天然状态的构建和稳定性提供了新的思路。我们表明,五种众所周知的特定有利的螺旋间相互作用(氢键、芳香相互作用、盐桥以及两种来自堆积模体的相互作用)精确地确定了 15 种不同蛋白质中跨膜螺旋的堆积方式。为了证明这一点,我们仅使用这些相互作用、通用相互作用几何形状和单个螺旋骨架构象,反复重新组装每个蛋白质的螺旋束。平均而言,最能满足五种螺旋间相互作用所施加的约束的代表性重建结构集,其与天然结构的 Cα均方根偏差平均值为 1.03Å。讨论了对蛋白质折叠、结构和运动预测、建模和设计的影响。

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