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通过经验自由能方法估算的亮氨酸拉链二聚体的稳定性。

Stabilities of leucine zipper dimers estimated by an empirical free energy method.

作者信息

Krystek S R, Bruccoleri R E, Novotny J

机构信息

Department of Macromolecular Modeling, Bristol-Myers Squibb Research Institute, Princeton, NJ.

出版信息

Int J Pept Protein Res. 1991 Sep;38(3):229-36. doi: 10.1111/j.1399-3011.1991.tb01433.x.

Abstract

The leucine zipper motif is a characteristic amino acid sequence found in dimeric DNA-binding proteins. Computer-generated models for leucine zippers were constructed as alpha-helical coiled dimers with leucine repeated every seventh residue. An empirical Gibbs free energy, delta G, function which incorporates hydrophobic force, electrostatic interactions, and conformational entropy loss as the major intermolecular interactions was used to estimate the delta G of dimer formation in fos, jun, and GCN4 zipper sequences. The calculations showed that complexes known to form stable homo- or heterodimers have favorable (negative) delta G, while other less stable complexes have unfavorable (positive) delta G. Leucines in position d of the coiled coil contribute large hydrophobic stabilization energies while residues in the a position contribute less to dimer stability. Hydrophobic contributions show little sequence specificity, however, and do not contribute significantly to homo/heterodimer preference. Charged residues in the e and g positions, on the other hand, determine homo/heterodimer specificity. In GCN4 homodimers, residues GLU el, Glu b2, Lys g2, and Lys e4 greatly contribute to dimer stability. The preferential stability of fos-jun heterodimer over the jun-jun and fos-fos homodimers is primarily due to the side chains Asp b1, Glu g1, Asp b2, Glu e2, Glu g2, Glu g3, and Lys a5 of the fos helix, and Arg c1, Lys g1, Lys b2, Lys e2, Arg e4, and Glu g4 of the jun helix.

摘要

亮氨酸拉链基序是在二聚体DNA结合蛋白中发现的一种特征性氨基酸序列。亮氨酸拉链的计算机生成模型被构建为α-螺旋卷曲二聚体,亮氨酸每隔七个残基重复出现。一种经验性的吉布斯自由能(ΔG)函数被用于估计Fos、Jun和GCN4拉链序列中二聚体形成的ΔG,该函数将疏水作用力、静电相互作用和构象熵损失作为主要的分子间相互作用。计算结果表明,已知能形成稳定同二聚体或异二聚体的复合物具有有利的(负的)ΔG,而其他不太稳定的复合物具有不利的(正的)ΔG。卷曲螺旋d位的亮氨酸贡献了较大的疏水稳定能,而a位的残基对二聚体稳定性的贡献较小。然而,疏水作用几乎没有序列特异性,对同二聚体/异二聚体偏好性的贡献也不显著。另一方面,e位和g位的带电残基决定了同二聚体/异二聚体的特异性。在GCN4同二聚体中,残基GLU e1、Glu b2、Lys g2和Lys e4对二聚体稳定性有很大贡献。Fos-Jun异二聚体相对于Jun-Jun和Fos-Fos同二聚体的优先稳定性主要归因于Fos螺旋的侧链Asp b1、Glu g1、Asp b2、Glu e2、Glu g2、Glu g3和Lys a5,以及Jun螺旋的Arg c1、Lys g1、Lys b2、Lys e2、Arg e4和Glu g4。

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