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Substrate Specificity of Streptococcal Unsaturated Glucuronyl Hydrolases for Sulfated Glycosaminoglycan

机译:链球菌不饱和葡萄糖醛酸水解酶对硫酸糖胺聚糖的底物特异性

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摘要

Unsaturated glucuronyl hydrolase (UGL) categorized into the glycoside hydrolase family 88 catalyzes the hydrolytic release of an unsaturated glucuronic acid from glycosaminoglycan disaccharides, which are produced from mammalian extracellular matrices through the β-elimination reaction of polysaccharide lyases. Here, we show enzyme characteristics of pathogenic streptococcal UGLs and structural determinants for the enzyme substrate specificity. The putative genes for UGL and phosphotransferase system for amino sugar, a component of glycosaminoglycans, are assembled into a cluster in the genome of pyogenic and hemolytic streptococci such as Streptococcus agalactiae, Streptococcus pneumoniae, and Streptococcus pyogenes, which produce extracellular hyaluronate lyase as a virulent factor. The UGLs of these three streptococci were overexpressed in Escherichia coli cells, purified, and characterized. Streptococcal UGLs degraded unsaturated hyaluronate and chondroitin disaccharides most efficiently at approximately pH 5.5 and 37 °C. Distinct from Bacillus sp. GL1 UGL, streptococcal UGLs preferred sulfated substrates. DNA microarray and Western blotting indicated that the enzyme was constitutively expressed in S. agalactiae cells, although the expression level increased in the presence of glycosaminoglycan. The crystal structure of S. agalactiae UGL (SagUGL) was determined at 1.75 Å resolution by x-ray crystallography. SagUGL adopts α6/α6-barrel structure as a basic scaffold similar to Bacillus UGL, but the arrangement of amino acid residues in the active site differs between the two. SagUGL Arg-236 was found to be one of the residues involved in its activity for the sulfated substrate through structural comparison and site-directed mutagenesis. This is the first report on the structure and function of streptococcal UGLs.
机译:分类为糖苷水解酶家族88的不饱和葡糖醛酸水解酶(UGL)催化不饱和葡糖醛酸从糖胺聚糖二糖的水解释放,所述糖胺聚糖二糖是由哺乳动物细胞外基质通过多糖裂解酶的β-消除反应产生的。在这里,我们显示了致病性链球菌UGL的酶特性和酶底物特异性的结构决定因素。 UGL的推定基因和氨基糖的磷酸转移酶系统(糖胺聚糖的组成部分)在化脓性和溶血性链球菌(如无乳链球菌,肺炎链球菌和化脓性链球菌)的基因组中组装成簇,从而产生细胞外透明质酸裂解酶因子。这三种链球菌的UGL在大肠杆菌细胞中过表达,纯化和鉴定。链球菌UGL在大约pH 5.5和37°C下最有效地降解了不饱和透明质酸盐和软骨素二糖。与芽孢杆菌属不同。 GL1 UGL,链球菌UGL优选硫酸化底物。 DNA微阵列和Western印迹表明该酶在无乳链球菌细胞中组成性表达,尽管在糖胺聚糖存在下表达水平增加。无乳链球菌UGL(SagUGL)的晶体结构通过X射线晶体学测定为1.75Å分辨率。 SagUGL采用α6/α6-桶状结构作为类似于UGL芽孢杆菌的基本支架,但是两者之间活性位点的氨基酸残基排列不同。通过结构比较和定点诱变,发现SagUGL Arg-236是参与其对硫酸化底物活性的残基之一。这是关于链球菌UGLs的结构和功能的第一份报告。

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