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克氏锥虫转唾液酸酶对β-硫代糖簇的多价唾液酸化及高效阴离子交换色谱分析

Multivalent sialylation of β-thio-glycoclusters by Trypanosoma cruzi trans sialidase and analysis by high performance anion exchange chromatography.

作者信息

Agustí Rosalía, Cano María Emilia, Cagnoni Alejandro J, Kovensky José, de Lederkremer Rosa M, Uhrig María Laura

机构信息

CIHIDECAR-CONICET, Departamento de Química Orgánica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellón 2, Ciudad Universitaria, 1428, Buenos Aires, Argentina.

Laboratoire de Glycochimie, des Antimicrobiens et des Agroressources (LG2A)-CNRS UMR 7478, Université de Picardie Jules Verne, 33 rue Saint Leu, 80039, Amiens Cedex, France.

出版信息

Glycoconj J. 2016 Oct;33(5):809-18. doi: 10.1007/s10719-016-9676-0. Epub 2016 Jun 15.

Abstract

The synthesis of multivalent sialylated glycoclusters is herein addressed by a chemoenzymatic approach using the trans-sialidase of Trypanosoma cruzi (TcTS). Multivalent β-thio-galactopyranosides and β-thio-lactosides were used as acceptor substrates and 3'-sialyllactose as the sialic acid donor. High performance anion exchange chromatography with pulsed amperometric detection (HPAEC-PAD) was shown to be an excellent technique for the analysis of the reaction products. Different eluting conditions were optimized to allow the simultaneous resolution of the sialylated species, as well as their neutral precursors. The TcTS efficiently transferred sialyl residues to di, tri, tetra and octa β-thiogalactosides. In the case of an octavalent thiolactoside, up to six polysialylated compounds could be resolved. Preparative sialylation reactions were performed using the tetravalent and octavalent acceptor substrates. The main sialylated derivatives could be unequivocally assigned by MALDI mass spectrometry. Inhibition of the transfer to the natural substrate, N-acetyllactosamine, was also studied. The octalactoside caused 82 % inhibition of sialic acid transfer when we used equimolar concentrations of donor, acceptor and inhibitor.

摘要

本文采用化学酶法,利用克氏锥虫转唾液酸酶(TcTS)来合成多价唾液酸化糖簇。以多价β-硫代吡喃半乳糖苷和β-硫代乳糖苷作为受体底物,3'-唾液酸乳糖作为唾液酸供体。结果表明,高效阴离子交换色谱-脉冲安培检测法(HPAEC-PAD)是分析反应产物的一种出色技术。优化了不同的洗脱条件,以实现唾液酸化产物及其中性前体的同时分离。TcTS能有效地将唾液酸残基转移至二价、三价、四价和八价β-硫代半乳糖苷。对于八价硫代乳糖苷,最多可分离出六种多唾液酸化化合物。使用四价和八价受体底物进行了制备性唾液酸化反应。主要的唾液酸化衍生物可通过基质辅助激光解吸电离质谱(MALDI)明确鉴定。还研究了对天然底物N-乙酰乳糖胺转移的抑制作用。当使用等摩尔浓度的供体、受体和抑制剂时,八价乳糖苷对唾液酸转移的抑制率达82%。

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