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富含丙氨酸肽段中3(10)-螺旋和α-螺旋相对含量的估算:氢交换与高场核磁共振研究

Estimating the relative populations of 3(10)-helix and alpha-helix in Ala-rich peptides: a hydrogen exchange and high field NMR study.

作者信息

Millhauser G L, Stenland C J, Hanson P, Bolin K A, van de Ven F J

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Cruz 95064, USA.

出版信息

J Mol Biol. 1997 Apr 11;267(4):963-74. doi: 10.1006/jmbi.1997.0923.

Abstract

Recent experimental and theoretical work suggests that alanine-rich peptides fold as a mixture of 3(10)-helix (i --> i + 3 hydrogen bonding) and alpha-helix (i --> i + 4 hydrogen bonding). In order to assess the relative proportions of the two conformers, NMR studies were performed on the 16 residue sequences: Ac-AAAAKAAAAKAAAAKA-NH2 (3K) and Ac-AMAAKAWAAKAAAARA-NH2 (MW). Hydrogen/deuterium-exchange kinetics measured for the first three amide protons of the 3K peptide indicate that the NH of Ala3 is partially protected from exchange. This result is consistent with the presence of an i --> i + 3 hydrogen bond between the carbonyl group of the acetyl blocking group and the NH group of Ala3. The MW peptide is a modified version of the 3K peptide, designed to increase alphaH signal dispersion. 1H NMR spectra of the MW peptide at 750 MHz reveal a series of intermediate range (NOEs) consistent with a mixture of 3(10)-helix and alpha-helix. The relative intensities of the alphaN(i,i + 3) and alphabeta(i,i + 3) (nuclear Overhauser enhancements) NOEs suggest that 3(10)-helix is present throughout the peptide, but with the greatest contribution at the termini. A model was developed to determine the relative contributions of 3(10)-helix and alpha-helix. Lower bounds for the population of 3(10)-helix are approximately 50% at the termini and 25% in the middle of the peptide. The greatest alpha-helical content is between the middle of the peptide and the N terminus.

摘要

最近的实验和理论研究表明,富含丙氨酸的肽折叠成3(10)-螺旋(i→i + 3氢键)和α-螺旋(i→i + 4氢键)的混合物。为了评估这两种构象的相对比例,对16个残基序列进行了核磁共振研究:Ac-AAAAKAAAAKAAAAKA-NH2(3K)和Ac-AMAAKAWAAKAAAARA-NH2(MW)。对3K肽的前三个酰胺质子进行的氢/氘交换动力学测量表明,Ala3的NH部分受到交换保护。该结果与乙酰基封闭基团的羰基与Ala3的NH基团之间存在i→i + 3氢键一致。MW肽是3K肽的修饰版本,旨在增加αH信号分散度。750 MHz下MW肽的1H NMR光谱显示出一系列与3(10)-螺旋和α-螺旋混合物一致的中等范围(核Overhauser效应)。αN(i,i + 3)和αβ(i,i + 3)(核Overhauser增强)效应的相对强度表明,3(10)-螺旋存在于整个肽中,但在末端贡献最大。开发了一个模型来确定3(10)-螺旋和α-螺旋的相对贡献。3(10)-螺旋在肽末端的比例下限约为50%,在肽中间为25%。最大的α-螺旋含量在肽的中间和N末端之间。

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