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首页> 外文期刊>Biochemistry >Characterization of a bacterial beta-1,3-galactosyltransferase with application in the synthesis of tumor-associated T-antigen mimics
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Characterization of a bacterial beta-1,3-galactosyltransferase with application in the synthesis of tumor-associated T-antigen mimics

机译:细菌β-1,3-半乳糖基转移酶的表征及其在合成肿瘤相关T抗原模拟物中的应用

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摘要

T-Antigen (Gal-beta 1,3-GaINAc-alpha-O-Ser/Thr) is an important precursor of mucin-type O-glycans. T-Antigen is found to be closely associated with cancer progression and metastasis and has been used to develop carbohydrate-based anticancer vaccines. Enzymatic synthesis of T-antigen disaccharides have relied on the use of beta-1,3-galactosyltransferases recently cloned and characterized from several eukaryotic organisms. However, its application is limited by the difficulty of obtaining homogeneous enzymes and the strict substrate specificity of enzymes. Recently, a number of bacteria have been found to express carbohydrate structures that mimic host glycans. The corresponding glycosyltransferases have been exploited in the facile synthesis of a number of clinically important glycoconjugate mimics. In this study, we biochemically characterized a bacterial beta-1,3-galactosyltransferase (WbiP) from Escherichia coli O127, which expresses a T-antigen mimic in the lipopolysaccharide (LPS) structure. Substrate study showed that WbiP could readily glycosylate a series of N-acetylgalactosamine (GalNAc) analogues with a-substitutions at the reducing end, including glycosylated Ser and Thr (GalNAc-alpha-O-Ser/Thr), which illustrates the use of WbiP for the facile synthesis of T-antigens. Alignment of a group of putative bacterial beta-1,3-galactosyltransferases revealed the presence of two conserved DXD motifs, possibly suggesting a different functional role of each motif. Site-directed mutagenesis, enzyme kinetics as well as UDP-bead binding assays were carried out to investigate the role of each DXD motif in WbiP. The results suggest that (DSD90)-D-88 is critical in the binding of sugar donor UDP-Gal, whereas (DYD176)-D-174 may participate in the binding of the sugar acceptor. This study expands the scope of using bacterial glycosyltransferases as tools for in vitro synthesis of glycoconjugate mimics with clinical significance.
机译:T-抗原(Gal-beta 1,3-GaINAc-alpha-O-Ser / Thr)是粘蛋白型O-聚糖的重要前体。发现T抗原与癌症的进展和转移密切相关,已被用于开发基于碳水化合物的抗癌疫苗。 T-抗原二糖的酶促合成依赖于最近从几种真核生物中克隆和鉴定的β-1,3-半乳糖基转移酶的使用。但是,其应用受到难以获得均相酶和酶的严格底物特异性的限制。最近,已发现许多细菌表达模仿宿主聚糖的碳水化合物结构。相应的糖基转移酶已被用于许多临床上重要的糖缀合物模拟物的简便合成中。在这项研究中,我们从大肠杆菌O127生化表征了细菌β-1,3-半乳糖基转移酶(WbiP),该细菌在脂多糖(LPS)结构中表达T抗原模拟物。底物研究表明,WbiP可以很容易地糖基化一系列N-乙酰半乳糖胺(GalNAc)类似物,在还原端带有a-取代基,包括糖基化的Ser和Thr(GalNAc-alpha-O-Ser / Thr),这说明了WbiP易于合成T抗原。一组假定的细菌β-1,3-半乳糖基转移酶的比对揭示了两个保守的DXD基序的存在,可能暗示了每个基序的不同功能。进行了定点诱变,酶动力学以及UDP珠结合试验来研究每个DXD基序在WbiP中的作用。结果表明,(DSD90)-D-88在糖供体UDP-Gal的结合中至关重要,而(DYD176)-D-174可能参与糖受体的结合。这项研究扩大了使用细菌糖基转移酶作为体外合成具有临床意义的糖缀合物模拟物的工具的范围。

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