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由两个连续的封端盒引起的蛋白质片段中的构象平衡:1H-、13C-NMR和突变分析。

A conformational equilibrium in a protein fragment caused by two consecutive capping boxes: 1H-, 13C-NMR, and mutational analysis.

作者信息

Guerois R, Cordier-Ochsenbein F, Baleux F, Huynh-Dinh T, Neumann J M, Sanson A

机构信息

Département de Biologie Cellulaire et Moléculaire, URA CNRS 2096, CEA Saclay, Gif sur Yvette, France.

出版信息

Protein Sci. 1998 Jul;7(7):1506-15. doi: 10.1002/pro.5560070703.

Abstract

The conformational properties of an 18 residues peptide spanning the entire sequence, L1KTPA5QFDAD10ELRAA15MKG, of the first helix (A-helix) of domain 2 of annexin I, were thoroughly investigated. This fragment exhibits several singular features, and in particular, two successive potential capping boxes, T3xxQ6 and D8xxE11. The former corresponds to the native hydrogen bond network stabilizing the alpha helix N-terminus in the protein; the latter is a non-native capping box able to break the helix at residue D8, and is observed in the domain 2 partially folded state. Using 2D-NMR techniques, we showed that two main populations of conformers coexist in aqueous solution. The first corresponds to a single helix extending from T3 to K17. The second corresponds to a broken helix at residue Ds. Four mutants, T3A, F7A, D8A, and E11A, were designed to further analyze the role of key amino acids in the equilibrium between the two ensembles of conformers. The sensitivity of NMR parameters to account for the variations in the populations of conformers was evaluated for each peptide. Our data show the delta13Calpha chemical shift to be the most relevant parameter. We used it to estimate the population ratio in the various peptides between the two main ensembles of conformers, the full helix and the broken helix. For the WT, E11A, and F7A peptides, these ratios are respectively 35/65, 60/40, 60/40. Our results were compared to the data obtained from helix/coil transition algorithms.

摘要

对膜联蛋白I结构域2的第一个螺旋(A-螺旋)中跨越整个序列L1KTPA5QFDAD10ELRAA15MKG的18个残基的肽段的构象性质进行了深入研究。该片段表现出几个独特的特征,特别是两个连续的潜在封端盒,T3xxQ6和D8xxE11。前者对应于稳定蛋白质中α螺旋N端的天然氢键网络;后者是一个非天然封端盒,能够在残基D8处破坏螺旋,并且在结构域2的部分折叠状态中观察到。使用二维核磁共振技术,我们表明在水溶液中存在两种主要构象异构体群体。第一种对应于从T3延伸到K17的单螺旋。第二种对应于在残基D8处断裂的螺旋。设计了四个突变体T

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