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家族 GH99 内切-α-1,2-甘露聚糖酶的基于机制抑制剂设计策略的探索。

Exploration of Strategies for Mechanism-Based Inhibitor Design for Family GH99 endo-α-1,2-Mannanases.

机构信息

School of Chemistry, Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Parkville, Vic, 3010, Australia.

York Structural Biology Laboratory, Department of Chemistry, University of York, Heslington, YO10 5DD, UK.

出版信息

Chemistry. 2018 May 23;24(29):7464-7473. doi: 10.1002/chem.201800435. Epub 2018 Apr 30.

Abstract

endo-α-1,2-Mannosidases and -mannanases, members of glycoside hydrolase family 99 (GH99), cleave α-Glc/Man-1,3-α-Man-OR structures within mammalian N-linked glycans and fungal α-mannan, respectively. They are proposed to act through a two-step mechanism involving a 1,2-anhydrosugar "epoxide" intermediate incorporating two conserved catalytic carboxylates. In the first step, one carboxylate acts as a general base to deprotonate the 2-hydroxy group adjacent to the fissile glycosidic bond, and the other provides general acid assistance to the departure of the aglycon. We report herein the synthesis of two inhibitors designed to interact with either the general base (α-mannosyl-1,3-(2-aminodeoxymannojirimycin), Man2NH DMJ) or the general acid (α-mannosyl-1,3-mannoimidazole, ManManIm). Modest affinities were observed for an endo-α-1,2-mannanase from Bacteroides thetaiotaomicron. Structural studies revealed that Man2NH DMJ binds like other iminosugar inhibitors, which suggests that the poor inhibition shown by this compound is not a result of a failure to achieve the expected interaction with the general base, but rather the reduction in basicity of the endocyclic nitrogen caused by introduction of a vicinal, protonated amine at C2. ManManIm binds with the imidazole headgroup distorted downwards, a result of an unfavourable interaction with a conserved active site tyrosine. This study has identified important limitations associated with mechanism-inspired inhibitor design for GH99 enzymes.

摘要

内-α-1,2-甘露糖苷酶和甘露聚糖酶是糖苷水解酶家族 99(GH99)的成员,分别切割哺乳动物 N-连接糖基和真菌 α-甘露聚糖中α-Glc/Man-1,3-α-Man-OR 结构。它们被提议通过两步机制发挥作用,涉及包含两个保守催化羧酸的 1,2-脱水糖“环氧化物”中间体。在第一步中,一个羧酸作为一个通用碱,使相邻的可裂解糖苷键上的 2-羟基去质子化,另一个羧酸提供通用酸协助离去糖苷配基。本文报道了两种抑制剂的合成,旨在与通用碱(α-甘露基-1,3-(2-氨基去氧甘露基),Man2NH DMJ)或通用酸(α-甘露基-1,3-甘露咪唑,ManManIm)相互作用。我们观察到来自拟杆菌属的内切-α-1,2-甘露聚糖酶对其具有适度的亲和力。结构研究表明,Man2NH DMJ 与其他亚氨基糖抑制剂结合,这表明该化合物的抑制效果不佳不是由于未能实现与通用碱的预期相互作用,而是由于在 C2 处引入相邻的质子化胺导致内环氮的碱性降低。ManManIm 与咪唑头基团向下扭曲结合,这是由于与保守的活性位点酪氨酸的不利相互作用。这项研究确定了与 GH99 酶的基于机制的抑制剂设计相关的重要限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/febf/6001782/47f3c37dda1b/CHEM-24-7464-g001.jpg

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