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丝氨酸和苏氨酸残基使α-螺旋呈χ(1)=g(-)构象弯曲。

Serine and threonine residues bend alpha-helices in the chi(1) = g(-) conformation.

作者信息

Ballesteros J A, Deupi X, Olivella M, Haaksma E E, Pardo L

机构信息

Laboratori de Medicina Computacional, Unitat de Bioestadística, Facultat de Medicina, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.

出版信息

Biophys J. 2000 Nov;79(5):2754-60. doi: 10.1016/S0006-3495(00)76514-3.

Abstract

The relationship between the Ser, Thr, and Cys side-chain conformation (chi(1) = g(-), t, g(+)) and the main-chain conformation (phi and psi angles) has been studied in a selection of protein structures that contain alpha-helices. The statistical results show that the g(-) conformation of both Ser and Thr residues decreases their phi angles and increases their psi angles relative to Ala, used as a control. The additional hydrogen bond formed between the O(gamma) atom of Ser and Thr and the i-3 or i-4 peptide carbonyl oxygen induces or stabilizes a bending angle in the helix 3-4 degrees larger than for Ala. This is of particular significance for membrane proteins. Incorporation of this small bending angle in the transmembrane alpha-helix at one side of the cell membrane results in a significant displacement of the residues located at the other side of the membrane. We hypothesize that local alterations of the rotamer configurations of these Ser and Thr residues may result in significant conformational changes across transmembrane helices, and thus participate in the molecular mechanisms underlying transmembrane signaling. This finding has provided the structural basis to understand the experimentally observed influence of Ser residues on the conformational equilibrium between inactive and active states of the receptor, in the neurotransmitter subfamily of G protein-coupled receptors.

摘要

在一系列包含α螺旋的蛋白质结构中,研究了丝氨酸(Ser)、苏氨酸(Thr)和半胱氨酸(Cys)侧链构象(χ₁ = g⁻、t、g⁺)与主链构象(φ和ψ角)之间的关系。统计结果表明,相对于用作对照的丙氨酸(Ala),Ser和Thr残基的g⁻构象会降低其φ角并增加其ψ角。Ser和Thr的O(γ)原子与i - 3或i - 4肽羰基氧之间形成的额外氢键会诱导或稳定比Ala的螺旋大3 - 4度的弯曲角。这对膜蛋白尤为重要。在细胞膜一侧的跨膜α螺旋中纳入这个小的弯曲角会导致位于膜另一侧的残基发生显著位移。我们推测,这些Ser和Thr残基的旋转异构体构型的局部改变可能导致跨膜螺旋发生显著的构象变化,从而参与跨膜信号传导的分子机制。这一发现为理解在G蛋白偶联受体的神经递质亚家族中,实验观察到的Ser残基对受体非活性和活性状态之间构象平衡的影响提供了结构基础。

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