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A model for hydration of peptides and its application to the conformational analysis of terminally blocked amino acids and dipeptides

机译:肽水合模型及其在末端封闭氨基酸和二肽构象分析中的应用

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摘要

A theoretical model for peptide structure, which takes into account the effects of hydration in conformational energy calculations, is described. The free energy of hydration is composed of a term for “specific hydration,” representing solute-water hydrogen bonding, and a term for “non-specific hydration,” describing the interaction of the solute with water molecules in a first-neighbor shell. Minimum-energy conformations were computed for the hydrated N-acetyl-N′-methylamides of the 20 naturally occurring amino acids, and the results were compared with those computed in the absence of hydration. The relative energies of many conformations and the width of some low-energy regions of the (ø, Ψ) conformational maps are altered when the free energy of nonspecific hydration is included. The term for specific hydration causes large charges of the energy, but only in some regions of the maps. Observed vicinal coupling constants are approximated better by the computation when hydration is included. Conformational preferences of the individual residues in hydrated dipeptides are similar to those computed for the hydrated single residues, showing that intraresidue interactions predominate in dipeptides. This supports the concept of the importance of short-range interactions in proteins. Bend probabilities were computed and compared with observed frequencies of occurrence of bends in proteins of known structure. Computed values improve only for some of the dipeptides containing polar residues or glycine when hydration is included. For bends involving two nonpolar residues, computations omitting hydration give better results.
机译:描述了一种肽结构的理论模型,该模型在构象能量计算中考虑了水合作用的影响。水合的自由能由表示溶质-水氢键的“特定水合”一词和描述第一邻居壳中溶质与水分子的相互作用的“非特定水合”一词组成。计算了20种天然氨基酸的水合N-乙酰基-N'-甲基酰胺的最小能量构象,并将结果与​​没有水合条件下计算出的结果进行了比较。当包含非特异性水合作用的自由能时,许多构象的相对能和(ø,Ψ)构象图的一些低能区域的宽度都会改变。特定水化的术语会产生大量的能量,但仅在地图的某些区域中。当包括水合作用时,通过计算可以更好地近似观察到的邻位耦合常数。水合二肽中各个残基的构象偏好与水合单残基的构象偏好相似,表明残基内相互作用在二肽中占主导。这支持了蛋白质中短程相互作用的重要性的概念。计算弯曲概率,并将其与已知结构的蛋白质中观察到的弯曲发生频率进行比较。当包括水合时,计算值仅对某些包含极性残基或甘氨酸的二肽有所改善。对于涉及两个非极性残基的折弯,忽略水合作用的计算会得出更好的结果。

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