Suppr超能文献

GlcNAc-Asn连接模型及类似物中糖苷配基部分的构象偏好:N-(β-D-吡喃葡萄糖基)卤代乙酰胺的晶体结构及从头算量子化学计算

Conformational preferences of the aglycon moiety in models and analogs of GlcNAc-Asn linkage: crystal structures and ab initio quantum chemical calculations of N-(beta-D-glycopyranosyl)haloacetamides.

作者信息

Ali Mohamed Mohamed Naseer, Aich Udayanath, Varghese Babu, Pérez Serge, Imberty Anne, Loganathan Duraikkannu

机构信息

CERMAV-CNRS, BP 53, 38041 Grenoble cedex 9, France.

出版信息

J Am Chem Soc. 2008 Jul 2;130(26):8317-25. doi: 10.1021/ja800335m. Epub 2008 Jun 7.

Abstract

The biological addition of oligosaccharide structures to asparagine residues of N-glycoproteins influences the properties and bioactivities of these macromolecules. The linkage region constituents, 2-acetamino-2-deoxy-beta-D-glucopyranose monosaccharide (GlcNAc) and L-asparagine amino acid (Asn), are conserved in the N-glycoproteins of all eukaryotes. In order to gain information about the structure and dynamics of glycosylated proteins, two chloroacetamido sugars, Glc betaNAcNHCOCH2Cl and Man betaNHCOCH2Cl, have been synthesized, and their crystal structures have been solved. Structural comparison with a series of other models and analogs gives insight about the influence of the N-acetyl group at position C2 on the conformation of the glycan-peptide linkage at C1. Interestingly, this N-acetyl group also influences the packing and network of hydrogen bonds with involvement in weak hydrogen bonds C-H...X that are of biological importance. DFT ab initio calculations performed on a series of models and analogs also confirm that the GlcNAc derivatives present different preferred conformation about the N-CO-CH2-X (chi2) torsion angle of the glycan-peptide linkage, when compared to other monosaccharide derivatives. The energy profiles that have been obtained will be useful for parametrization of molecular mechanics force-field. The conjunction of crystallographic and computational chemistry studies provides arguments for the structural effect of the N-acetyl group at C2 in establishing an extended conformation that presents the oligosaccharide away from the protein surface.

摘要

将寡糖结构生物添加到N-糖蛋白的天冬酰胺残基上会影响这些大分子的性质和生物活性。连接区域的组成成分,2-乙酰氨基-2-脱氧-β-D-吡喃葡萄糖单糖(GlcNAc)和L-天冬酰胺氨基酸(Asn),在所有真核生物的N-糖蛋白中都是保守的。为了获得有关糖基化蛋白结构和动力学的信息,已合成了两种氯乙酰胺糖,β-D-GlcNAcNHCOCH2Cl和β-D-ManNHCOCH2Cl,并解析了它们的晶体结构。与一系列其他模型和类似物进行结构比较,可以深入了解C2位的N-乙酰基对C1位聚糖-肽键构象的影响。有趣的是,这个N-乙酰基还影响氢键的堆积和网络,参与了具有生物学重要性的弱氢键C-H...X。对一系列模型和类似物进行的DFT从头计算也证实,与其他单糖衍生物相比,GlcNAc衍生物在聚糖-肽键的N-CO-CH2-X(χ2)扭转角上呈现出不同的优选构象。获得的能量分布图将有助于分子力学力场的参数化。晶体学和计算化学研究的结合为C2位的N-乙酰基在建立使寡糖远离蛋白质表面的伸展构象中的结构效应提供了依据。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验