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带负电荷的谷氨酸侧链对双链α-螺旋卷曲螺旋稳定性影响的位置依赖性

Positional dependence of the effects of negatively charged Glu side chains on the stability of two-stranded alpha-helical coiled-coils.

作者信息

Kohn W D, 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. 1997 May-Jun;3(3):209-23. doi: 10.1002/(SICI)1099-1387(199705)3:3%3C209::AID-PSC102%3E3.0.CO;2-S.

Abstract

The effects on protein stability of negatively charged Glu side chains at different positions along the length of the alpha-helix were investigated in the two-stranded alpha-helical coiled-coil. A native coiled-coil has been designed which consists of two identical 35 residue polypeptide chains with a heptad repeat QgVaGbAcLdQeKf and a Cys residue at position 2 to allow the formation of an interchain 2-2' disulphide bridge. This coiled-coil contains no intra- or interchain electrostatic interactions and served as a control for peptides in which Glu was substituted for Gln in the e or g heptad positions. The effect of the substitutions on stability was determined by urea denaturation at 20 degrees C with the degree of unfolding monitored by circular dichroism spectroscopy. A Glu substituted for Gln near the N-terminus in each chain of the coiled-coil stabilizes the coiled-coil at pH 7, consistent with the charge-helix dipole interaction model. This stability increase is modulated by pH change and the addition of salt (KCl or guanidine hydrochloride), confirming the electrostatic nature of the effect. In contrast, Glu substitution in the middle of the helix destabilizes the coiled-coil because of the lower helical propensity and hydrophobicity of Glu compared with Gln at pH7. Taking the intrinsic differences into account, the apparent charge-helix dipole interaction at the N-terminus is approximately 0.35 kcal/mol per Glu substitution. A Glu substitution at the C-terminus destabilizes the coiled-coil more than in the middle owing to the combined effects of intrinsic destabilization and unfavourable charge-helix dipole interaction with the negative pole of the helix dipole. The estimated destabilizing charge-helix dipole interaction of 0.08 kcal/mol is smaller than the stabilizing interaction at the N-terminus. The presence of a 2-2'disulphide bridge appears to have little influence on the magnitude of the charge-helix dipole interactions at either end of the coiled-coil.

摘要

在双链α-螺旋卷曲螺旋中,研究了α-螺旋长度上不同位置带负电荷的谷氨酸(Glu)侧链对蛋白质稳定性的影响。设计了一种天然卷曲螺旋,它由两条相同的35个残基的多肽链组成,具有七肽重复序列QgVaGbAcLdQeKf,且在第2位有一个半胱氨酸残基,以允许形成链间2-2'二硫键。这种卷曲螺旋不包含链内或链间静电相互作用,用作在e或g七肽位置用Glu取代Gln的肽的对照。通过在20℃下用尿素变性来测定取代对稳定性的影响,并用圆二色光谱监测解折叠程度。在卷曲螺旋每条链的N端附近用Glu取代Gln在pH 7时使卷曲螺旋稳定,这与电荷-螺旋偶极相互作用模型一致。这种稳定性的增加受pH变化和盐(KCl或盐酸胍)添加的调节,证实了该效应的静电性质。相比之下,在螺旋中部用Glu取代会使卷曲螺旋不稳定,因为在pH 7时Glu与Gln相比具有较低的螺旋倾向和疏水性。考虑到内在差异,N端的表观电荷-螺旋偶极相互作用约为每个Glu取代0.35千卡/摩尔。在C端用Glu取代使卷曲螺旋比在中部更不稳定,这是由于内在不稳定和与螺旋偶极负极的不利电荷-螺旋偶极相互作用的综合影响。估计的0.08千卡/摩尔的去稳定化电荷-螺旋偶极相互作用小于N端的稳定化相互作用。2-2'二硫键的存在似乎对卷曲螺旋两端电荷-螺旋偶极相互作用的大小影响很小。

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