首页> 外文期刊>Protein Science: A Publication of the Protein Society >Factors involved in the stability of isolated beta-sheets: Turn sequence, beta-sheet twisting, and hydrophobic surface burial.
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Factors involved in the stability of isolated beta-sheets: Turn sequence, beta-sheet twisting, and hydrophobic surface burial.

机译:涉及孤立的β-折叠片稳定性的因素包括:转弯顺序,β-折叠片扭曲和疏水性表面掩埋。

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We have recently reported on the design of a 20-residue peptide able to form a significant population of a three-stranded up-and-down antiparallel beta-sheet in aqueous solution. To improve our beta-sheet model in terms of the folded population, we have modified the sequences of the two 2-residue turns by introducing the segment DPro-Gly, a sequence shown to lead to more rigid type II' beta-turns. The analysis of several NMR parameters, NOE data, as well as Deltadelta(CalphaH), DeltadeltaC(beta), and Deltadelta(Cbeta) values, demonstrates that the new peptide forms a beta-sheet structure in aqueous solution more stable than the original one, whereas the substitution of the DPro residues by LPro leads to a random coil peptide. This agrees with previous results on beta-hairpin-forming peptides showing the essential role of the turn sequence for beta-hairpin folding. The well-defined beta-sheet motif calculated for the new designed peptide (pair-wise RMSD for backbone atoms is 0.5 +/- 0.1 A) displays a high degree of twist. This twist likely contributes to stability, as a more hydrophobic surface is buried in the twisted beta-sheet than in a flatter one. The twist observed in the up-and-down antiparallel beta-sheet motifs of most proteins is less pronounced than in our designed peptide, except for the WW domains. The additional hydrophobic surface burial provided by beta-sheet twisting relative to a "flat" beta-sheet is probably more important for structure stability in peptides and small proteins like the WW domains than in larger proteins for which there exists a significant contribution to stability arising from their extensive hydrophobic cores.
机译:我们最近报道了一种20残基肽的设计,该肽能够在水溶液中形成大量的三链上下反平行β-折叠。为了改进折叠人口方面的β-折叠模型,我们通过引入片段DPro-Gly修饰了两个2个残基转弯的序列,该序列显示可导致更严格的II型β'转弯。对几个NMR参数,NOE数据以及Deltadelta(CalphaH),DeltadeltaCβ和Deltadelta(Cbeta)值的分析表明,新肽在水溶液中形成的β-折叠结构比原始肽更稳定。 ,而DPro残基被LPro取代会产生一个无规卷曲肽。这与先前关于β-发夹形成肽的结果一致,该结果显示了β-发夹折叠的转弯序列的重要作用。为新设计的肽(骨架原子的成对RMSD为0.5 +/- 0.1 A)计算出的明确定义的β-sheet基序显示出高度的扭曲。这种扭曲可能有助于稳定性,因为在扭曲的β-折叠中比在平坦的β-折叠中更疏水的表面被掩埋。除WW域外,在大多数蛋白质的上下反向平行β-折叠基序中观察到的扭曲没有我们设计的肽明显。相对于“平坦的”β-折叠,β-折叠扭曲提供的额外疏水表面埋藏对于肽和小蛋白质(如WW域)的结构稳定性可能比在较大的蛋白质中对结构稳定性起重要作用的更大的肽更重要。从其广泛的疏水核心。

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