Renugopalakrishnan V, Urry D W
Biophys J. 1978 Dec;24(3):729-38. doi: 10.1016/S0006-3495(78)85416-2.
Molecular orbital calculations (CNDO/2) are reported for the interaction of Na+ and Mg+2 with the carbonyl of a model peptide moiety (N-methyl acetamide) as a function of the C--O ... Me distance and angle and with variation in the number of ligands for the purpose of determining the steepness of the distance dependence of the binding energy and for the purpose of determining the reduction of charge on the ion with increasing numbers of ligands. The greater energy derived on divalent ion binding and the steeper distance dependence indicate that selective, divalent over monovalent, ion binding will occur whenever the liganding system can provide a coordination shell of appropriate dimension. The calculations indicate that the preferred C--O ... Me angle is not 180 degrees. Of particular note is the decrease of charge on the cation on binding to N-methyl acetamide. One ligand bound to Na+ reduces the charge from 1.0 to 0.7 electron units and four ligands bound to Mg+2 reduces the charge from 2.0 to 0.7 electron units. This is of primary significance in carrier and channel mechanisms for cation permeation of lipid membranes; and although the numerical values are qualitative, the implication is for allowance of multiple occupancy of channels by monovalent cations.
本文报道了分子轨道计算(CNDO/2),研究了Na⁺和Mg²⁺与模型肽部分(N - 甲基乙酰胺)羰基之间的相互作用,该相互作用是C--O...Me距离和角度的函数,并且随着配体数量的变化而变化,目的是确定结合能对距离依赖性的陡度,以及确定随着配体数量增加离子上电荷的减少情况。二价离子结合时产生的能量更高,且距离依赖性更陡,这表明只要配体系统能够提供合适尺寸的配位壳,就会发生选择性的二价离子而非单价离子结合。计算表明,优选的C--O...Me角度不是180度。特别值得注意的是,阳离子与N - 甲基乙酰胺结合时电荷减少。与Na⁺结合的一个配体将电荷从1.0电子单位减少到0.7电子单位,与Mg²⁺结合的四个配体将电荷从2.0电子单位减少到0.7电子单位。这在脂质膜阳离子渗透的载体和通道机制中具有重要意义;尽管数值是定性的,但这意味着单价阳离子可以允许在通道中多重占据。