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Free-Energy Calculations of the Interactions of Helical Poly(L-Proline) with Water

机译:螺旋聚(L-脯氨酸)与水相互作用的自由能计算

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摘要

Conformational energies, consisting of nonbonded and electrostatic interactions, have been calculated for poly(L-proline) I and II helices, of six-residues length, with a water molecule hydrogen-bonded to each imide group. For polyproline I, the Traub-Shmueli prolyl-ring geometry was used, whereas for polyproline II, calculations were done for the 2 ring geometries of Leung and Marsh and, in some cases, for the several ring geometries of Ramachandran, et al. The chain torsion angles ω(N-C′) and Ψ(Cα-C′) were varied, as were the two angles that specify the orientations of the water molecules. By summation over the latter, it was possible to calculate a free energy at each ω,Ψ that incorporated the conformational entropy of the water molecules. Such ω,Ψ maps reveal that binding of water can cause changes in the equilibrium conformation of polyproline, as well as in the energetics of the chain with respect to ω and Ψ. This has important consequences on the statistics of the chain. Considerations of prolyl-ring self-energies, as well as the conformational entropies of the chains, show that polyproline II is more stable in water than is polyproline I, and determine which ring geometry is favored for polyproline in water.
机译:已经计算出六残基长度的聚(L-脯氨酸)I和II螺旋的构象能,该构象能由非键合和静电相互作用组成,每个分子团氢键合了一个水分子。对于聚脯氨酸I,使用了Traub-Shmueli脯氨酸环的几何结构,而对于聚脯氨酸II,则对Leung和Marsh的2个环几何结构进行了计算,在某些情况下,还对Ramachandran等人的几种环几何结构进行了计算。链扭转角ω(N-C')和Ψ(C α -C')发生了变化,两个指定水分子取向的角度也发生了变化。通过对后者的求和,可以计算出每个ω,Ψ的自由能,其中包含了水分子的构象熵。这样的ω,Ψ图揭示了水的结合可以引起聚脯氨酸的平衡构象的变化,以及相对于ω和Ψ的链的能量学变化。这对链的统计有重要影响。对脯氨酰环自能以及链的构象熵的考虑表明,聚脯氨酸II在水中比聚脯氨酸I更稳定,并确定哪种环几何结构更适合水中的脯氨酸。

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