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一个频繁的、由 GxxxG 介导的跨膜缔合基序,有利于形成螺旋间的 Cα-H 氢键。

A frequent, GxxxG-mediated, transmembrane association motif is optimized for the formation of interhelical Cα-H hydrogen bonds.

机构信息

Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706.

出版信息

Proc Natl Acad Sci U S A. 2014 Mar 11;111(10):E888-95. doi: 10.1073/pnas.1319944111. Epub 2014 Feb 25.

Abstract

Carbon hydrogen bonds between Cα-H donors and carbonyl acceptors are frequently observed between transmembrane helices (Cα-H···O=C). Networks of these interactions occur often at helix-helix interfaces mediated by GxxxG and similar patterns. Cα-H hydrogen bonds have been hypothesized to be important in membrane protein folding and association, but evidence that they are major determinants of helix association is still lacking. Here we present a comprehensive geometric analysis of homodimeric helices that demonstrates the existence of a single region in conformational space with high propensity for Cα-H···O=C hydrogen bond formation. This region corresponds to the most frequent motif for parallel dimers, GASright, whose best-known example is glycophorin A. The finding suggests a causal link between the high frequency of occurrence of GASright and its propensity for carbon hydrogen bond formation. Investigation of the sequence dependency of the motif determined that Gly residues are required at specific positions where only Gly can act as a donor with its "side chain" Hα. Gly also reduces the steric barrier for non-Gly amino acids at other positions to act as Cα donors, promoting the formation of cooperative hydrogen bonding networks. These findings offer a structural rationale for the occurrence of GxxxG patterns at the GASright interface. The analysis identified the conformational space and the sequence requirement of Cα-H···O=C mediated motifs; we took advantage of these results to develop a structural prediction method. The resulting program, CATM, predicts ab initio the known high-resolution structures of homodimeric GASright motifs at near-atomic level.

摘要

碳氢键(Cα-H···O=C)存在于α-C 供氢原子与羰基受体之间,在跨膜螺旋中经常观察到这种键合。这些相互作用的网络通常发生在由 GxxxG 和类似模式介导的螺旋-螺旋界面处。Cα-H 氢键被假设在膜蛋白折叠和缔合中很重要,但它们是螺旋缔合的主要决定因素的证据仍然缺乏。在这里,我们对同型二聚体螺旋进行了全面的几何分析,证明了在构象空间中存在一个具有高 Cα-H···O=C 氢键形成倾向的单一区域。该区域对应于平行二聚体最常见的 motif,GASright,其最著名的例子是血型糖蛋白 A。这一发现表明,GASright 的高出现频率与其形成碳氢键的倾向之间存在因果关系。对 motif 的序列依赖性的研究表明,甘氨酸残基在特定位置是必需的,只有甘氨酸可以用其“侧链”Hα 作为供体。甘氨酸还降低了其他位置非甘氨酸氨基酸作为 Cα 供体的空间位阻,促进了协同氢键网络的形成。这些发现为 GxxxG 模式在 GASright 界面处的存在提供了结构基础。该分析确定了 Cα-H···O=C 介导的 motif 的构象空间和序列要求;我们利用这些结果开发了一种结构预测方法。由此产生的程序 CATM 可以近乎原子水平预测同型二聚体 GASright motif 的已知高分辨率结构。

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