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丝氨酸二酰胺 O-糖苷模型化合物的从头算构象空间研究

Ab initio conformational space study of model compounds of O-glycosides of serine diamide.

作者信息

Csonka Gábor I, Schubert Gábor A, Perczel András, Sosa Carlos P, Csizmadia Imre G

机构信息

Department of Inorganic Chemistry, Budapest University of Technology and Economics, 1521 Budapest, Hungary.

出版信息

Chemistry. 2002 Oct 18;8(20):4718-33. doi: 10.1002/1521-3765(20021018)8:20<4718::AID-CHEM4718>3.0.CO;2-S.

Abstract

Relative stabilities of rotamers of the N-acetyl-O-(2-acetamido-2-deoxy-alpha-D-galactopyranosyl)-L-seryl-N'-methyl amide (1) and eleven analogous molecules containing beta-galactose, alpha- and beta-mannose, alpha- and beta-glucose, and L-threonine were calculated to learn whether they could explain the natural preference for 1 in linkages between the carbohydrate and protein in glycoproteins. The lowest energy rotamers of four O-glycoside models of serine diamide were identified with a Monte Carlo search coupled with molecular mechanics (MM2*). These rotamers were further optimized with an ab initio level of theory (HF/6-31G(d)). Subsequently, B3LYP/6-31 + G(d) single point energies were calculated for the most stable HF structures. The most favorable interactions are present in 1 and its glucose analogue. The monosaccharide for the carbohydrate antenna is anchored to the serine residue with an AcNH...O=C-NHMe hydrogen bond in the most stable rotamers. The mannose analogue and the beta-anomers are considerably less stable according to the MM2* and especially to the ab inito energy values. The three analogues have HF/6-31 G(d) energies which are 4-6 kcal mol-1 higher; the single point B3LYP/6-31 + G(d)//HF/6-31 G(d) calculations yield preferences of 3-5 kcal mol-1 for 1. The most stable L-threonine analogues show a behaviour very similarly to the corresponding serine analogues. The ZPE and thermal correction components of the calculated delta H298 and delta G298 values are relatively small (< 0.4 kcal mol-1). However, the T delta S298 term can be as large as 2.6 kcal mol-1. The entropy terms stabilize the alpha-anomers relative to beta-anomers, and ManNAc relative to GalNAc. The largest stabilization effect is observed for one of the rotamers of the alpha-anomer of ManNAc.

摘要

计算了N-乙酰基-O-(2-乙酰氨基-2-脱氧-α-D-吡喃半乳糖基)-L-丝氨酰-N'-甲基酰胺(1)以及另外11个含有β-半乳糖、α-和β-甘露糖、α-和β-葡萄糖以及L-苏氨酸的类似分子的旋转异构体的相对稳定性,以了解它们是否能够解释糖蛋白中碳水化合物与蛋白质之间的连接中1具有天然优势的原因。通过蒙特卡罗搜索结合分子力学(MM2*)确定了丝氨酸二酰胺的四种O-糖苷模型的能量最低的旋转异构体。这些旋转异构体进一步用从头算理论水平(HF/6-31G(d))进行了优化。随后,对最稳定的HF结构计算了B3LYP/6-31 + G(d)单点能量。最有利的相互作用存在于1及其葡萄糖类似物中。在最稳定的旋转异构体中,碳水化合物天线的单糖通过AcNH...O=C-NHMe氢键锚定在丝氨酸残基上。根据MM2*,尤其是根据从头算能量值,甘露糖类似物和β-端基异构体的稳定性要低得多。这三种类似物的HF/6-31 G(d)能量要高4-6 kcal mol-1;单点B3LYP/6-31 + G(d)//HF/6-31 G(d)计算得出1的偏好为3-5 kcal mol-1。最稳定的L-苏氨酸类似物的行为与相应的丝氨酸类似物非常相似。计算得到的ΔH298和ΔG298值的零点能(ZPE)和热校正分量相对较小(< 0.4 kcal mol-1)。然而,TΔS298项可能高达2.6 kcal mol-1。熵项使α-端基异构体相对于β-端基异构体稳定,使ManNAc相对于GalNAc稳定。在ManNAc的α-端基异构体的一种旋转异构体中观察到最大的稳定化效应。

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