首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >beta-hairpin formation in aqueous solution and in the presence of trifluoroethanol: A H-1 and C-13 nuclear magnetic resonance conformational study of designed peptides
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beta-hairpin formation in aqueous solution and in the presence of trifluoroethanol: A H-1 and C-13 nuclear magnetic resonance conformational study of designed peptides

机译:水溶液和三氟乙醇存在下β-发夹的形成:设计肽的H-1和C-13核磁共振构象研究

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摘要

In order to check our current knowledge on the principles involved in beta-hairpin formation, we have modified the sequence of a 3:5 beta-hairpin forming peptide with two different purposes, first to increase the stability of the formed 3:5 beta-hairpin, and second to convert the 3:5 beta-hairpin into a 2:2 beta-hairpin. The conformational behavior of the designed peptides was investigated in aqueous solution and in 30% trifluoroethanol (TFE) by analysis of the following nuclear magnetic resonance (NMR) parameters: nuclear Overhauser effect (NOE) data, and CalphaH, C-13(alpha), and C-13(beta) conformational shifts. From the differences in the ability to adopt beta-hairpin structures in these peptides, we have arrived to the following conclusions: (i) beta-Hairpin population increases with the statistical propensity of residues to occupy each turn position. (ii) The loop length, and in turn, the beta-hairpin type, can be modified as a function of the type of turn favored by the loop sequence. These two conclusions reinforce previous results about the importance of beta-turn sequence in beta-hairpin folding. (iii) Side-chain packing on each face of the beta-sheet may play a major role in beta-hairpin stability; hence simplified : analysis in terms of isolated pair interactions and intrinsic beta-sheet propensities is insufficient. (iv) Contributions to beta-hairpin stability of turn and strand sequences are not completely independent. (v) The burial of hydrophobic surface upon beta-hairpin formation that, in turn, depends on side-chain packing also contributes to beta-hairpin stability. (vi) As previously observed, TFE stabilizes beta-hairpin structures, but the extent of the contribution of different factors to beta-hairpin formation is sometimes different in aqueous solution and in 30% TFE. (c) 2005 Wiley Periodicals, Inc.
机译:为了检查我们对β-发夹形成原理的最新了解,我们出于两个不同的目的修改了3:5β-发夹形成肽的序列,首先是为了提高形成的3:5β-发夹,然后将3:5 beta-发夹转换为2:2 beta-发夹。通过分析以下核磁共振(NMR)参数,研究了在水溶液和30%三氟乙醇(TFE)中设计的肽的构象行为:核Overhauser效应(NOE)数据和CalphaH,C-13α ,和C-13β构象变化。从在这些肽中采用β-发夹结构的能力的差异,我们得出以下结论:(i)β-发夹的数量随残基占据每个转位的统计倾向而增加。 (ii)可以根据环序列所偏爱的转弯类型来修改环的长度,进而改变β-发夹的类型。这两个结论加强了有关β转角序列在β发夹折叠中重要性的先前结果。 (iii)β-折叠片每面上的侧链堆积可能在β-发夹的稳定性中起主要作用;因此简化了:在孤立的对相互作用和内在的β-折叠倾向方面的分析是不够的。 (iv)转向和链序列对β-发夹稳定性的贡献并不完全独立。 (v)在依赖于侧链堆积的β-发夹结构形成时,疏水表面的掩埋也有助于β-发夹结构的稳定性。 (vi)如前所述,TFE使β-发夹结构稳定,但在水溶液和30%TFE中,不同因素对β-发夹形成的贡献程度有时会有所不同。 (c)2005年Wiley Periodicals,Inc.

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