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深入了解糖基化作用和植物凝集素 CrataBL 的单糖结合活性的影响。

Insights into the effects of glycosylation and the monosaccharide-binding activity of the plant lectin CrataBL.

机构信息

Aggeu Magalhães Research Center, Oswaldo Cruz Foundation, Recife, Brazil.

Department of Fundamental Chemistry, Federal University of Pernambuco, Recife, Brazil.

出版信息

Glycoconj J. 2017 Aug;34(4):515-522. doi: 10.1007/s10719-017-9766-7. Epub 2017 Mar 15.

Abstract

CrataBL is a glycoprotein isolated from Crataeva tapia bark, containing two N-glycosylation sites. It has been identified to present lectin activity with some specificity for binding glucose over galactose. However, to date, no information on the effects of glycosylation or CrataBL monosaccharide-binding sites and monosaccharide specificity has been obtained. Thus, molecular docking and molecular dynamics simulations were employed to characterize the glycosylated CrataBL conformation and dynamics in aqueous solutions, as well as the molecular basis for its binding specificity. The obtained results indicate both local and distant conformational stabilization effects of N-linked glycans over CrataBL protein moiety. Regarding its lectin activity, molecular docking calculations were performed in two possible binding sites, identified through sequence-based, structure-based and evolutionary information, using α- and β-anomeric states of the monosaccharides. The obtained poses were further refined through molecular dynamics simulations, suggesting that positively-charged amino acids dictate the binding preference for glucose over galactose in both sites. In addition, a possible preference for β-monosaccharides was proposed. Such data are expected to contribute to a better comprehension of the lectins monosaccharide-binding activities and carbohydrate-binding site structures.

摘要

CrataBL 是从 Crataeva tapia 树皮中分离得到的糖蛋白,含有两个 N-糖基化位点。已确定它具有凝集素活性,对结合葡萄糖具有一定的特异性,而不是半乳糖。然而,迄今为止,尚未获得有关糖基化或 CrataBL 单糖结合位点和单糖特异性的信息。因此,采用分子对接和分子动力学模拟来表征糖基化 CrataBL 在水溶液中的构象和动力学,以及其结合特异性的分子基础。获得的结果表明,N-连接的聚糖对 CrataBL 蛋白部分具有局部和远距离的构象稳定作用。关于其凝集素活性,通过基于序列、基于结构和进化信息的方法,在两个可能的结合位点上进行了分子对接计算,使用了单糖的α-和β-异头物态。通过分子动力学模拟进一步优化了获得的构象,表明在两个结合位点中,带正电荷的氨基酸决定了对葡萄糖的结合偏好,而不是半乳糖。此外,还提出了对β-单糖的可能偏好。这些数据有望有助于更好地理解凝集素的单糖结合活性和碳水化合物结合位点结构。

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