Manavalan P, Ponnuswamy P K, Srinivasan A R
Biochem J. 1977 Oct 1;167(1):171-82. doi: 10.1042/bj1670171.
Theoretical studies on glycyl-alanyl and seryl dipeptides were performed to determine the probable backbone and side-group conformations that are preferred for solvent interaction. By following the method of Lee & Richards [(1971) J. Mol. Biol. 55, 379-400], a solute molecule is represented by a set of interlocking spheres of appropriate van der Waals radii assigned to each atom, and a solvent (water) molecule is rolled along the envelope of the van der Waals surface, and the surface accessible to the solvent molecule, and hence the solvent accessibility for a particular conformation of the solute molecule, is computed. From the calculated solvent accessibilities for various conformations, solvation maps for dipeptides were constructed. These solvation maps suggest that the backbone polar atoms could interact with solvent molecules selectively, depending on the backbone conformation. A conformation in the right-handed bridge (zetaR) region is favoured for both solvent interaction and intrachain hydrogen-bonding. Also the backbone side-chain hydrogen-bonding within the same dipeptide fragment in proteins is less favoured than hydrogen-bonding between side chain and water and between side chain and atoms of other residues. Solvent accessibilities suggest that very short distorted alphaR-helical and extended-structural parts may be stabilized via solvent interaction, and this could easily be possible at the surface of the protein molecules, in agreement with protein-crystal data.
对甘氨酰丙氨酸和丝氨酰二肽进行了理论研究,以确定有利于溶剂相互作用的可能的主链和侧基构象。按照Lee和Richards[(1971)J. Mol. Biol. 55, 379 - 400]的方法,溶质分子由一组分配给每个原子的具有适当范德华半径的互锁球体表示,溶剂(水)分子沿着范德华表面的包络滚动,计算溶剂分子可及的表面,从而得到溶质分子特定构象的溶剂可及性。根据各种构象计算出的溶剂可及性,构建了二肽的溶剂化图谱。这些溶剂化图谱表明,主链极性原子可根据主链构象与溶剂分子选择性相互作用。右手桥(zetaR)区域的构象有利于溶剂相互作用和链内氢键形成。而且蛋白质中同一二肽片段内的主链侧链氢键形成比侧链与水之间以及侧链与其他残基原子之间的氢键形成更不易发生。溶剂可及性表明,非常短的扭曲alphaR-螺旋和伸展结构部分可能通过溶剂相互作用得以稳定,这在蛋白质分子表面很容易实现,与蛋白质晶体数据一致。