Lehrstuhl für Chemie der Biopolymere, Department für biowissenschaftliche Grundlagen, Technische Universität München, Freising, Germany.
J Mol Biol. 2010 Feb 19;396(2):452-61. doi: 10.1016/j.jmb.2009.11.054. Epub 2009 Dec 1.
Folding and oligomerization of integral membrane proteins frequently depend on specific interactions of transmembrane helices. Interacting amino acids of helix-helix interfaces may form complex motifs and exert different types of molecular forces. Here, a set of strongly self-interacting transmembrane domains (TMDs), as isolated from a combinatorial library, was found to contain basic and acidic residues, in combination with polar nonionizable amino acids and C-terminal GxxxG motifs. Mutational analyses of selected sequences and reconstruction of high-affinity interfaces confirmed the cooperation of these residues in homotypic interactions. Probing heterotypic interaction indicated the presence of interhelical charge-charge interactions. Furthermore, simple motifs of an ionizable residue and GxxxG are significantly overrepresented in natural TMDs, and a specific combination of these motifs exhibits high-affinity heterotypic interaction. We conclude that intramembrane charge-charge interactions depend on sequence context. Moreover, they appear important for homotypic and heterotypic interactions of numerous natural TMDs.
整合膜蛋白的折叠和寡聚化通常依赖于跨膜螺旋的特定相互作用。螺旋 - 螺旋界面的相互作用氨基酸可能形成复杂的模体,并发挥不同类型的分子力。在这里,从组合文库中分离出的一组强自相互作用的跨膜结构域(TMD)被发现含有碱性和酸性残基,与极性非电离氨基酸和 C 末端 GxxxG 基序结合。对选定序列的突变分析和高亲和力界面的重建证实了这些残基在同型相互作用中的合作。对异型相互作用的探测表明存在螺旋间的电荷 - 电荷相互作用。此外,可电离残基的简单模体和 GxxxG 在天然 TMD 中明显过表达,并且这些模体的特定组合表现出高亲和力的异型相互作用。我们得出结论,膜内电荷 - 电荷相互作用取决于序列上下文。此外,它们似乎对许多天然 TMD 的同型和异型相互作用很重要。