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首页> 外文期刊>Carbohydrate research >Molecular dynamics simulations of a cyclic-beta-(1->2) glucan containing an alpha-(1->6)linkage as a 'molecular alleviator' for the macrocyclic conformational strain
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Molecular dynamics simulations of a cyclic-beta-(1->2) glucan containing an alpha-(1->6)linkage as a 'molecular alleviator' for the macrocyclic conformational strain

机译:包含α-(1-> 6)链作为大环构象菌株“分子缓解剂”的环状β-(1-> 2)葡聚糖的分子动力学模拟

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摘要

The conformational preferences of a cyclic osmoregulated periplasmic glucan of Ralstonia solanacearum (OPGR),which is composed of 13 glucose units and linked entirely via beta-(l ->2)linkages excluding one alpha-(1->6)linkage,were characterized by molecular dynamics simulations.Of the three force fields modified for carbohydrates that were applied to select a suitable one for the cyclic glucan,the carbohydrate solution force field (CSFF)was found to most accurately simulate the cyclic molecule.To determine the conformational characteristics of OPGR,we investigated the glycosidic dihedral angle distribution,fluctuation,and the potential energy of the glucan and constructed hypothetical cyclic (CYS13)and linear (LINEAR)glucans.All beta-(1->2)-gly-cosidic linkages of OPGR adopted stable conformations,and the dihedral angles fluctuated in this energy region with some flexibility.However,despite the inherent flexibility of the alpha-(1->6)linkage,the dihedral angles have no transition and are more rigid than that in a linear glucan.CYS13,which consists of only beta-(1 ->2)linkages,is somewhat less flexible than other glycans,and one of its linkages adopts a higher energy conformation.In addition,the root-mean-square fluctuation of this linkage is lower than that of other linkages.Furthermore,the potential energy of glucans increases in the order of LINEAR,OPGR,and CYS13.These results provide evidence of the existence of conformational constraints in the cyclic glucan.The alpha-(1->6)-glycosidic linkage can relieve this constraint more efficiently than the beta-(1->2)linkage.The conformation of OPGR can reconcile the tendency for individual glycosidic bonds to adopt energetically favorable conformations with the requirement for closure of the macrocyclic ring by losing the inherent flexibility of the alpha-(1->6)-glycosidic linkage.
机译:表征了青枯雷尔氏菌(OPGR)的一种循环渗透性周质葡聚糖(OPGR)的构象偏好,该葡聚糖由13个葡萄糖单元组成,并且完全通过β-(1-> 2)链连接,但不包括一个α-(1-> 6)链。通过分子动力学模拟。在碳水化合物修饰的三个力场中,选择了合适的一种用于环状葡聚糖,发现了碳水化合物溶液力场(CSFF)最准确地模拟了环状分子。我们研究了葡聚糖的糖苷二面角分布,波动和势能,并构建了假设的环状(CYS13)和线性(LINEAR)葡聚糖。采用了OPGR的所有β-(1-> 2)-糖苷键构象稳定,二面角在该能量区域内具有一定的灵活性。但是,尽管α-(1-> 6)链具有固有的柔性,但二面角没有过渡,并且具有CYS13仅由β-(1-> 2)键组成,比其他聚糖的柔韧性稍差,并且其键之一采用更高的能量构象。该连接的均方差低于其他连接的均方差。此外,葡聚糖的势能按LINEAR,OPGR和CYS13的顺序增加。这些结果提供了循环葡聚糖中存在构象约束的证据。 α-(1-> 6)-糖苷键可以比β-(1-> 2)键更有效地缓解这种约束.OPGR的构象可以调和单个糖苷键采用符合要求的能量有利构象的趋势通过失去α-(1-> 6)-糖苷键的固有柔性来封闭大环。

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