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GROMOS96 43a1 performance in predicting oligosaccharide conformational ensembles within glycoproteins

机译:GROMOS96 43a1在预测糖蛋白内寡糖构象集合中的性能

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摘要

In previous work [Pol-Fachin, L; Fernandes, C. L; Verli, H.; Carbohydr. Res. 2009, 344,491-500], we had demonstrated that GROMOS96 43a1 force field and Lowdin HF/6-31G** -derived atomic charges, adequately represent a glycoprotein's conformational ensemble in aqueous solutions, taking as the starting geometries NMR-determined structures. Based on such data, the present work intends to evaluate the use of the main solution conformations of isolated disaccharides, to build the carbohydrate moiety of glycoproteins, for which no previous experimental information is available. The observed results suggested that the entire glycoprotein scaffold appears unable to promote major modifications in the conformational behavior of glycosidic linkages. Additionally, when compared to energy contour plots, the results support the use of solution ensembles, to refine vacuum conformations of carbohydrate databases in the assembling of glycoproteins 3D structures. Finally, such approach is applied to build a full glycosylated model for COX-1 and COX-2 enzymes.
机译:在以前的工作中[Pol-Fachin,L;费尔南德斯(Fernandes) Verli,H .;碳水化合物。 Res。 2009,344,491-500],我们已经证明,以GROMOS96 43a1力场和Lowdin HF / 6-31G **衍生的原子电荷为代表,由NMR确定的起始几何结构足以代表水溶液中糖蛋白的构象整体。基于此类数据,本工作旨在评估分离的二糖主要溶液构象的用途,以构建糖蛋白的碳水化合物部分,对此尚无先前的实验信息。观察到的结果表明,整个糖蛋白支架似乎无法促进糖苷键构象行为的重大修饰。此外,当与能量等高线图进行比较时,结果支持溶液集成的使用,以精炼糖蛋白3D结构组装中碳水化合物数据库的真空构象。最后,将这种方法应用于为COX-1和COX-2酶建立完整的糖基化模型。

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