Liu J, Waterhouse A L
Department of Chemistry, Tulane University, New Orleans, Louisiana 70118.
Carbohydr Res. 1992 Jul 20;232(1):1-15. doi: 10.1016/s0008-6215(00)90990-x.
A relaxed conformational energy map for levanbiose, O-beta-D-fructofuranosyl-(2----6)-beta-D-fructofuranoside, was computed with the molecular mechanics program MM2(87). All torsion angles of the three linkage bonds were driven by 30 degrees increments while two primary alcohol groups were held at three staggered forms. The steric energy of all other parameters was optimized. The side groups were retained at the same relative positions on the two rings in this first part of the study so our results are directly applicable to the study of polymeric levan with identical repeating units. The low-energy dimers did not lead to viable polymers. The interresidue linkage torsion angles defined by C-6-O-2'-C-2'-C-1' (phi) and O-5-C-5-C-6-O-2' (omega) have minima at +60 degrees and -60 degrees, respectively, with accessible minima at other staggered forms. As observed in inulobiose, the preferred torsion angle at central linkage bond defined by C-5-C-6-O-2'-C-2' (psi) was antiperiplanar. An analysis of all conformations of staggered side groups showed that the C-1 and C-1' groups had little effect but the C-6' group showed a preference for chi-6'(O-5'-C-5'-C-6'-O-6') = -60 degrees. The fructofuranose rings were started at the low-energy 4(3)T conformation (angle of pseudorotation, phi 2 = 265 degrees) that was retained except when the linkage conformations created severe inter-residue conflict.
用分子力学程序MM2(87)计算了蔗果二糖(O-β-D-呋喃果糖基-(2→6)-β-D-呋喃果糖苷)的松弛构象能量图。三个连接键的所有扭转角以30度增量驱动,同时两个伯醇基团保持在三种交错形式。优化了所有其他参数的空间能。在本研究的第一部分,侧基在两个环上保持相同的相对位置,因此我们的结果可直接应用于具有相同重复单元的聚左旋糖的研究。低能量二聚体无法形成可行的聚合物。由C-6-O-2'-C-2'-C-1'(φ)和O-5-C-5-C-6-O-2'(ω)定义的残基间连接扭转角分别在+60度和-60度处有最小值,在其他交错形式处也有可及的最小值。如在菊糖二糖中观察到的,由C-5-C-6-O-2'-C-2'(ψ)定义的中心连接键处的优选扭转角为反式共平面。对交错侧基的所有构象进行分析表明,C-1和C-1'基团影响很小,但C-6'基团表现出对χ-6'(O-5'-C-5'-C-6'-O-6')=-60度的偏好。呋喃果糖环从低能量的4(3)T构象(假旋转角,φ2 = 265度)开始,除非连接构象产生严重的残基间冲突,否则该构象保持不变。