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单链两亲性α-螺旋稳定性上侧链疏水性与α-螺旋倾向的关系。

Relationship of sidechain hydrophobicity and alpha-helical propensity on the stability of the single-stranded amphipathic alpha-helix.

作者信息

Monera O D, Sereda T J, Zhou N E, Kay C M, Hodges R S

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

J Pept Sci. 1995 Sep-Oct;1(5):319-29. doi: 10.1002/psc.310010507.

Abstract

The aim of the present investigation is to determine the effect of alpha-helical propensity and sidechain hydrophobicity on the stability of amphipathic alpha-helices. Accordingly, a series of 18-residue amphipathic alpha-helical peptides has been synthesized as a model system where all 20 amino acid residues were substituted on the hydrophobic face of the amphipathic alpha-helix. In these experiments, all three parameters (sidechain hydrophobicity, alpha-helical propensity and helix stability) were measured on the same set of peptide analogues. For these peptide analogues that differ by only one amino acid residue, there was a 0.96 kcal/mole difference in alpha-helical propensity between the most (Ala) and the least (Gly) alpha-helical analogue, a 12.1-minute difference between the most (Phe) and the least (Asp) retentive analogue on the reversed-phase column, and a 32.3 degrees C difference in melting temperatures between the most (Leu) and the least (Asp) stable analogue. The results show that the hydrophobicity and alpha-helical propensity of an amino acid sidechain are not correlated with each other, but each contributes to the stability of the amphipathic alpha-helix. More importantly, the combined effects of alpha-helical propensity and sidechain hydrophobicity at a ratio of about 2:1 had optimal correlation with alpha-helix stability. These results suggest that both alpha-helical propensity and sidechain hydrophobicity should be taken into consideration in the design of alpha-helical proteins with the desired stability.

摘要

本研究的目的是确定α-螺旋倾向和侧链疏水性对两亲性α-螺旋稳定性的影响。因此,合成了一系列18个残基的两亲性α-螺旋肽作为模型系统,其中所有20种氨基酸残基都被替换到两亲性α-螺旋的疏水面上。在这些实验中,对同一组肽类似物测量了所有三个参数(侧链疏水性、α-螺旋倾向和螺旋稳定性)。对于这些仅相差一个氨基酸残基的肽类似物,在α-螺旋倾向方面,α-螺旋性最强的类似物(丙氨酸)和最弱的类似物(甘氨酸)之间相差0.96千卡/摩尔;在反相柱上,保留性最强的类似物(苯丙氨酸)和最弱的类似物(天冬氨酸)之间相差12.1分钟;在解链温度方面,稳定性最强的类似物(亮氨酸)和最弱的类似物(天冬氨酸)之间相差32.3℃。结果表明,氨基酸侧链的疏水性和α-螺旋倾向彼此不相关,但它们都对两亲性α-螺旋的稳定性有贡献。更重要的是,α-螺旋倾向和侧链疏水性以约2:1的比例产生的综合效应与α-螺旋稳定性具有最佳相关性。这些结果表明,在设计具有所需稳定性的α-螺旋蛋白时,应同时考虑α-螺旋倾向和侧链疏水性。

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