Iida-Tanaka N, Fukase K, Utsumi H, Ishizuka I
Department of Biochemistry, Teikyo University School of Medicine, Tokyo, Japan.
Eur J Biochem. 2000 Dec;267(23):6790-7. doi: 10.1046/j.1432-1033.2000.01773.x.
The time-averaged solution conformation of a unique bis-sulfated glycolipid (HSO3)2-2,6Manalpha-2Glcalpha-1-sn-2,3-O-alkylglycerol , was studied in terms of the torsional angles of two glycosidic linkages, phi (H1-C1-O-Cx) and psi (C1-O-Cx-Hx), derived from heteronuclear three-bond coupling constants (3JC,H), and inter-residual proton-proton distances from J-HMBC 2D and ROESY experiments, respectively. The dihedral angles of Glcalpha1Gro in glycolipids were determined for the first time. The C1-C4 diagonal line of the alpha-glucose ring makes an angle of approximately 120 degrees with the glycerol backbone, suggesting that the alpha-glucose ring is almost parallel to the membrane surface in contrast with the perpendicular orientation of the beta-isomer. Furthermore, minimum-energy states around the conformation were estimated by Monte Carlo/stochastic dynamics (MCSD) mixed-mode simulations and the energy minimization with assisted model building and energy refinement (AMBER) force field. The Glcalpha1Gro linkage has a single minimum-energy structure. On the other hand, three conformers were observed for the Manalpha2Glc linkage. The flexibility of Manalpha2Glc was further confirmed by the absence of inter-residual hydrogen bonds which were judged from the temperature coefficients of the chemical shifts, ddelta/dT (-10-3 p.p.m. degrees C-1), of hydroxy protons. The conformational flexibility may facilitate interaction of extracellular substances with both sulfate groups.
通过异核三键耦合常数(3JC,H)推导得到的两个糖苷键的扭转角φ(H1-C1-O-Cx)和ψ(C1-O-Cx-Hx),以及分别来自J-HMBC二维实验和ROESY实验的残基间质子-质子距离,研究了一种独特的双硫酸化糖脂(HSO3)2-2,6Manα-2Glcα-1-sn-2,3-O-烷基甘油的时间平均溶液构象。首次测定了糖脂中Glcα1Gro的二面角。α-葡萄糖环的C1-C4对角线与甘油主链形成约120度的夹角,这表明α-葡萄糖环几乎与膜表面平行,与β-异构体的垂直取向形成对比。此外,通过蒙特卡罗/随机动力学(MCSD)混合模式模拟以及使用辅助模型构建和能量精修(AMBER)力场进行能量最小化,估计了构象周围的最低能量状态。Glcα1Gro键具有单一的最低能量结构。另一方面,观察到Manα2Glc键有三种构象异构体。根据羟基质子化学位移的温度系数ddelta/dT(-10-3 ppm℃-1)判断,由于不存在残基间氢键,进一步证实了Manα2Glc的灵活性。构象灵活性可能有助于细胞外物质与两个硫酸基团的相互作用。