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3-O-硫酸化硫酸乙酰肝素的生物合成:硫酸乙酰肝素3-O-磺基转移酶同工型5独特的底物特异性

Biosynthesis of 3-O-sulfated heparan sulfate: unique substrate specificity of heparan sulfate 3-O-sulfotransferase isoform 5.

作者信息

Chen Jinghua, Duncan Michael B, Carrick Kevin, Pope R Marshall, Liu Jian

机构信息

Division of Medicinal Chemistry and Natural Products, School of Pharmacy, CB#7360, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Glycobiology. 2003 Nov;13(11):785-94. doi: 10.1093/glycob/cwg101. Epub 2003 Aug 7.

Abstract

Heparan sulfate 3-O-sulfotransferase transfers sulfate to the 3-OH position of a glucosamine to generate 3-O-sulfated heparan sulfate (HS), which is a rare component in HS from natural sources. We previously reported that 3-O- sulfotransferase isoform 5 (3-OST-5) generates both an antithrombin-binding site to exhibit anticoagulant activity and a binding site for herpes simplex virus 1 glycoprotein D to serve as an entry receptor for herpes simplex virus. In this study, we characterize the substrate specificity of 3-OST-5 using the purified enzyme. The enzyme was expressed in insect cells using the baculovirus expression approach and was purified by using heparin-Sepharose and 3',5'-ADP- agarose chromatographies. As expected, the purified enzyme generates both an antithrombin binding site and a glycoprotein D binding site. We isolated IdoUA-AnMan3S and IdoUA-AnMan3S6S from nitrous acid-degraded 3-OST-5-modified HS (pH 1.5), suggesting that 3-OST-5 enzyme sulfates the glucosamine residue that is linked to an iduronic acid residue at the nonreducing end. We also isolated a disaccharide with a structure of DeltaUA2S-GlcNS3S and a tetrasaccharide with a structure of DeltaUA2S-GlcNS-IdoUA2S-GlcNH23S6S from heparin lyases-digested 3-OST-5-modified HS. Our results suggest that 3-OST-5 enzyme sulfates both N-sulfated glucosamine and N-unsubstituted glucosamine residues. Taken together, the results indicate that 3-OST-5 has broader substrate specificity than those of 3-OST-1 and 3-OST-3. The unique substrate specificity of 3-OST-5 serves as an additional tool to study the mechanism for the biosynthesis of biologically active HS.

摘要

硫酸乙酰肝素3 - O -磺基转移酶将硫酸基团转移至氨基葡萄糖的3 - OH位置,生成3 - O -硫酸化硫酸乙酰肝素(HS),这是天然来源的HS中一种罕见的成分。我们之前报道过,3 - O -磺基转移酶同工型5(3 - OST - 5)既能生成抗凝血酶结合位点以展现抗凝活性,又能生成单纯疱疹病毒1糖蛋白D的结合位点,作为单纯疱疹病毒的进入受体。在本研究中,我们使用纯化的酶来表征3 - OST - 5的底物特异性。该酶通过杆状病毒表达方法在昆虫细胞中表达,并使用肝素 - 琼脂糖和3',5'-二磷酸腺苷 - 琼脂糖色谱法进行纯化。正如预期的那样,纯化后的酶既能生成抗凝血酶结合位点,又能生成糖蛋白D结合位点。我们从亚硝酸降解的3 - OST - 5修饰的HS(pH 1.5)中分离出艾杜糖醛酸 - N - 乙酰甘露糖胺3 - 硫酸酯和艾杜糖醛酸 - N - 乙酰甘露糖胺3,6 - 二硫酸酯,这表明3 - OST - 5酶使与非还原端艾杜糖醛酸残基相连的氨基葡萄糖残基硫酸化。我们还从肝素裂解酶消化的3 - OST - 5修饰的HS中分离出一种结构为Δ艾杜糖醛酸2 - 硫酸酯 - N - 乙酰氨基葡萄糖3 - 硫酸酯的二糖和一种结构为Δ艾杜糖醛酸2 - 硫酸酯 - N - 乙酰氨基葡萄糖 - 艾杜糖醛酸2 - 硫酸酯 - N - 乙酰葡糖胺3,6 - 二硫酸酯的四糖。我们的结果表明,3 - OST - 5酶既能使N - 硫酸化氨基葡萄糖残基硫酸化,也能使N - 未取代的氨基葡萄糖残基硫酸化。综上所述,这些结果表明3 - OST - 5的底物特异性比3 - OST - 1和3 - OST - 3的底物特异性更广泛。3 - OST - 5独特的底物特异性可作为研究生物活性HS生物合成机制的额外工具。

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