Monoi H
Department of Physiology, Tohoku University School of Medicine, Sendai, Japan.
Biophys J. 1993 Jan;64(1):36-43. doi: 10.1016/S0006-3495(93)81338-9.
The energy-minimized conformation of an infinitely long poly-(L,D)-alanine in single-stranded beta 6.3-helix was calculated by the molecular mechanics method. When energy minimization was started from a wide range of initial geometries, six optimized conformations were obtained and identified as the right- and left-handed counterparts of the beta 4.5-, beta 6.3-, and beta 8.2-helices. It was found that their conformation energies increase in this order, the beta 4.5-helix having the lowest energy. The backbone dihedral angles of the energy-minimized beta 6.3-helix were: phi L = -116 degrees (or -131 degrees), psi L = 122 degrees (or 111 degrees), phi D = 131 degrees (or 116 degrees), psi D = -111 degrees (or -122 degrees), omega L = 173 degrees (or 173 degrees), and omega D = -173 degrees (or -173 degrees) for the right-handed (or left-handed) helix. This helix was composed of 6.30 residues/turn with a pitch of 4.97 A. All the alpha-carbons of L- and D-configurations appeared on one common circular helix. Interestingly, small deviations (approximately 7 degrees) of the peptide bonds from the planar structure caused a considerable lowering of the conformation energy, and, at the same time, they produced more favorable fitting of the hydrogen bonds; the carbonyl oxygens and the nearest-neighbor alpha-hydrogens also took more favorable relative positions.
采用分子力学方法计算了单链β6.3-螺旋中无限长聚(L,D)-丙氨酸的能量最小化构象。当从广泛的初始几何结构开始进行能量最小化时,获得了六种优化构象,并将其确定为β4.5-、β6.3-和β8.2-螺旋的右手和左手对应物。发现它们的构象能量按此顺序增加,β4.5-螺旋的能量最低。能量最小化的β6.3-螺旋的主链二面角为:右手(或左手)螺旋的φL = -116°(或-131°),ψL = 122°(或111°),φD = 131°(或116°),ψD = -111°(或-122°),ωL = 173°(或173°),ωD = -173°(或-173°)。该螺旋由每圈6.30个残基组成,螺距为4.97 Å。L型和D型构型的所有α-碳原子都出现在一个共同的圆形螺旋上。有趣的是,肽键与平面结构的小偏差(约7°)导致构象能量显著降低,同时,它们使氢键的拟合更有利;羰基氧和最近邻的α-氢也处于更有利的相对位置。