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作为一种参与分枝杆菌脂阿拉伯甘露聚糖生物合成的α-(1-->6)-甘露糖基转移酶的探针的差向异构体和氨基二糖类似物。

Epimeric and amino disaccharide analogs as probes of an alpha-(1-->6)-mannosyltransferase involved in mycobacterial lipoarabinomannan biosynthesis.

机构信息

Alberta Ingenuity Centre for Carbohydrate Science and Department of Chemistry, The University of Alberta, Gunning-Lemieux Chemistry Centre, Edmonton, AB T6G 2G2, Canada.

出版信息

Org Biomol Chem. 2010 Jan 7;8(1):181-92. doi: 10.1039/b916580k. Epub 2009 Nov 16.

Abstract

Mycobacterial lipoarabinomannan (LAM) is an important, immunologically active glycan found in the cell wall of mycobacteria, including the human pathogen Mycobacterium tuberculosis. At the core of LAM is a mannan domain comprised of alpha-(1-->6)-linked-mannopyranose (Manp) residues. Previously, we and others have demonstrated that alpha-Manp-(1-->6)-alpha-Manp disaccharides (e.g., Manp-(1-->6)-alpha-ManpOctyl, ) are the minimum acceptor substrates for enzymes involved in the assembly of the LAM mannan core. We report here the synthesis five epimeric and three amino analogs of , and their subsequent biochemical evaluation against an alpha-(1-->6)-ManT activity present in a membrane preparation from M. smegmatis. Changing the manno- configuration of either residue of to talo- or gluco- led to a reduction or loss of activity, thus confirming earlier work showing that the C-2 and C-4 hydroxyl groups of each monosaccharide were important for enzymatic recognition. Characterization of the products formed from these analogs was done using a combination of mass spectrometry and glycosidase digestion, and full substrate kinetics were also performed. The analogs in which the acceptor hydroxyl group had been replaced with an amino group were, as expected, not substrates for the enzyme, but were weak inhibitors.

摘要

分枝杆菌脂阿拉伯甘露聚糖(LAM)是分枝杆菌细胞壁中一种重要的、具有免疫活性的聚糖,包括人类病原体结核分枝杆菌。LAM 的核心是由α-(1-->6)-连接的甘露吡喃糖(Manp)残基组成的甘露聚糖结构域。此前,我们和其他人已经证明,α-Manp-(1-->6)-α-Manp 二糖(例如,Manp-(1-->6)-α-ManpOctyl,)是参与 LAM 甘露聚糖核心组装的酶的最小受体底物。我们在此报告了五个差向异构体和三个氨基类似物的合成,并对来自 M. smegmatis 的膜制剂中存在的α-(1-->6)-ManT 活性进行了随后的生化评估。将到 talo-或 gluco-的任一位点的甘露构型改变导致活性降低或丧失,从而证实了早期工作表明每个单糖的 C-2 和 C-4 羟基对于酶识别很重要。使用质谱和糖苷酶消化的组合对这些类似物形成的产物进行了表征,并进行了完整的底物动力学研究。预期具有被氨基取代的受体羟基的类似物不是酶的底物,但它们是弱抑制剂。

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