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用于探究N-乙酰神经氨酸及其衍生物与霍乱弧菌唾液酸酶结合情况的饱和转移差异(STD)1H-NMR实验和计算机对接实验。

Saturation transfer difference (STD) 1H-NMR experiments and in silico docking experiments to probe the binding of N-acetylneuraminic acid and derivatives to Vibrio cholerae sialidase.

作者信息

Haselhorst Thomas, Wilson Jennifer C, Thomson Robin J, McAtamney Sarah, Menting John G, Coppel Ross L, von Itzstein Mark

机构信息

Institute for Glycomics, Griffith University Gold Coast Campus, Queensland, Australia.

出版信息

Proteins. 2004 Aug 1;56(2):346-53. doi: 10.1002/prot.20143.

DOI:10.1002/prot.20143
PMID:15211517
Abstract

Saturation transfer difference (STD) (1)H NMR experiments were used to probe the epitope binding characteristics of the sialidase [EC 3.2.1.18] from the bacterium Vibrio cholerae, the causative agent of cholera. Binding preferences were investigated for N-acetylneuraminic acid (Neu5Ac, 1), the product of the sialidase catalytic reaction, for the known sialidase inhibitor 5-acetamido-2,6-anhydro-3,5-dideoxy-D-glycero-D-galacto-non-2-enoic acid (Neu5Ac2en, 2), and for the uronic acid-based Neu5Ac2en mimetic iso-propyl 2-acetamido-2,4-dideoxy-alpha-L-threo-hex-4-enopyranosiduronic acid (3), in which the native glycerol side-chain of Neu5Ac2en is replaced with an O-iso-propyl ether. The STD experiments provided evidence, supporting previous studies, that Neu5Ac (1) binds to the sialidase as the alpha-anomer. Docking experiments using DOCK (version 4.0.1) revealed further information regarding the binding characteristics of the enzyme active site in complex with Neu5Ac2en (2) and the Neu5Ac2en mimetic (3), indicating an expected dominant interaction of the acetamide moiety with the protein.

摘要

采用饱和转移差(STD)氢核磁共振实验来探究霍乱弧菌(霍乱病原体)唾液酸酶[EC 3.2.1.18]的表位结合特性。研究了唾液酸酶催化反应产物N-乙酰神经氨酸(Neu5Ac,1)、已知唾液酸酶抑制剂5-乙酰氨基-2,6-脱水-3,5-二脱氧-D-甘油-D-半乳糖-壬-2-烯酸(Neu5Ac2en,2)以及基于糖醛酸的Neu5Ac2en模拟物异丙基2-乙酰氨基-2,4-二脱氧-α-L-苏式-己-4-烯吡喃糖醛酸(3)的结合偏好,其中Neu5Ac2en的天然甘油侧链被O-异丙基醚取代。STD实验提供了证据,支持先前的研究,即Neu5Ac(1)以α-异头物形式与唾液酸酶结合。使用DOCK(4.0.1版)进行的对接实验揭示了关于该酶活性位点与Neu5Ac2en(2)和Neu5Ac2en模拟物(3)复合物结合特性的更多信息,表明酰胺部分与蛋白质存在预期的主要相互作用。

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