首页> 外文期刊>Protein Science: A Publication of the Protein Society >A novel method reveals that solvent water favors polyproline II over beta-strand conformation in peptides and unfolded proteins: conditional hydrophobic accessible surface area (CHASA).
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A novel method reveals that solvent water favors polyproline II over beta-strand conformation in peptides and unfolded proteins: conditional hydrophobic accessible surface area (CHASA).

机译:一种新方法揭示了溶剂水比多肽和未折叠蛋白质中的β链构象更偏爱聚脯氨酸II:条件疏水可及表面积(CHASA)。

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摘要

In aqueous solution, the ensemble of conformations sampled by peptides and unfolded proteins is largely determined by their interaction with water. It has been a long-standing goal to capture these solute-water energetics accurately and efficiently in calculations. Historically, accessible surface area (ASA) has been used to estimate these energies, but this method breaks down when applied to amphipathic peptides and proteins. Here we introduce a novel method in which hydrophobic ASA is determined after first positioning water oxygens in hydrogen-bonded orientations proximate to all accessible peptide/protein backbone N and O atoms. This conditional hydrophobic accessible surface area is termed CHASA. The CHASA method was validated by predicting the polyproline-II (P(II)) and beta-strand conformational preferences of non-proline residues in the coil library (i.e., non-alpha-helix, non-beta-strand, non-beta-turn library derived from X-ray elucidated structures). Further, the method successfully rationalizes the previously unexplained solvation energies in polyalanyl peptides and compares favorably with published experimentally determined P(II) residue propensities. We dedicate this paper to Frederic M. Richards.
机译:在水溶液中,由肽和未折叠的蛋白质采样的构象的集合很大程度上取决于它们与水的相互作用。在计算中准确有效地捕获这些溶质水的能量学一直是一个长期目标。从历史上看,可访问的表面积(ASA)已用于估算这些能量,但是这种方法在应用于两亲性肽和蛋白质时会失效。在这里,我们介绍一种新颖的方法,其中首先将水氧以氢键键接的方式定位在所有可接近的肽/蛋白质骨架N和O原子附近,然后确定疏水性ASA。该有条件的疏水可及表面积被称为CHASA。通过预测线圈文库中非脯氨酸残基的多脯氨酸-II(P(II))和β-链构象偏好(即,非α-螺旋,非β-链,非β)来验证CHSA方法X射线阐明的结构得到的转弯库)。此外,该方法成功地使聚丙氨酰肽中先前无法解释的溶剂化能量合理化,并与已发表的实验确定的P(II)残基倾向进行了比较。我们将本文专用于Frederic M. Richards。

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