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Cloning and Characterization of a Novel Chondroitin Sulfate/Dermatan Sulfate 4-O-Endosulfatase from a Marine Bacterium

机译:从海洋细菌克隆和表征新型硫酸软骨素/硫酸皮肤素4-O-内硫酸酯酶

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摘要

Sulfatases are potentially useful tools for structure-function studies of glycosaminoglycans (GAGs). To date, various GAG exosulfatases have been identified in eukaryotes and prokaryotes. However, endosulfatases that act on GAGs have rarely been reported. Recently, a novel HA and CS lyase (HCLase) was identified for the first time from a marine bacterium (Han, W., Wang, W., Zhao, M., Sugahara, K., and Li, F. (2014) J. Biol. Chem. 289, 27886–27898). In this study, a putative sulfatase gene, closely linked to the hclase gene in the genome, was recombinantly expressed and characterized in detail. The recombinant protein showed a specific N-acetylgalactosamine-4-O-sulfatase activity that removes 4-O-sulfate from both disaccharides and polysaccharides of chondroitin sulfate (CS)/dermatan sulfate (DS), suggesting that this sulfatase represents a novel endosulfatase. The novel endosulfatase exhibited maximal reaction rate in a phosphate buffer (pH 8.0) at 30 °C and effectively removed 17–65% of 4-O-sulfates from various CS and DS and thus significantly inhibited the interactions of CS and DS with a positively supercharged fluorescent protein. Moreover, this endosulfatase significantly promoted the digestion of CS by HCLase, suggesting that it enhances the digestion of CS/DS by the bacterium. Therefore, this endosulfatase is a potential tool for use in CS/DS-related studies and applications.
机译:硫酸酯酶是糖胺聚糖(GAG)结构功能研究的潜在有用工具。迄今为止,在真核生物和原核生物中已鉴定出多种GAG外硫酸酯酶。然而,极少报道过作用于GAG的硫代内切酶。最近,首次从海洋细菌中鉴定出一种新型的HA和CS裂解酶(HCLase)(Han,W.,Wang,W.,Zhao,M.,Sugahara,K.,and Li,F.(2014) J. Biol。Chem。289,27886–27898)。在这项研究中,与基因组中的hclase基因紧密相连的推定的硫酸酯酶基因被重组表达并进行了详细表征。重组蛋白显示出特定的N-乙酰半乳糖胺-4-O-硫酸酯酶活性,该活性从硫酸软骨素(CS)/硫酸皮肤素(DS)的二糖和多糖中去除4-O-硫酸盐,表明该硫酸酯酶代表了一种新型的内切硫酸酯酶。新型硫酸内切酶在30°C的磷酸盐缓冲液(pH 8.0)中显示出最大的反应速率,并有效去除了各种CS和DS中的17-65%的4-O-硫酸盐,从而显着抑制了CS和DS的相互作用。增压的荧光蛋白。而且,这种内切硫酸酯酶显着促进了HCLase对CS的消化,表明它增强了细菌对CS / DS的消化。因此,这种硫酸内切酶是用于CS / DS相关研究和应用的潜在工具。

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