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与糖胺聚糖寡糖复合的软骨素B裂解酶的结构揭示了一种钙依赖性催化机制。

The structure of chondroitin B lyase complexed with glycosaminoglycan oligosaccharides unravels a calcium-dependent catalytic machinery.

作者信息

Michel Gurvan, Pojasek Kevin, Li Yunge, Sulea Traian, Linhardt Robert J, Raman Rahul, Prabhakar Vikas, Sasisekharan Ram, Cygler Miroslaw

机构信息

Biotechnology Research Institute, National Research Council of Canada, Montreal, Quebec H4P 2R2, Canada.

出版信息

J Biol Chem. 2004 Jul 30;279(31):32882-96. doi: 10.1074/jbc.M403421200. Epub 2004 May 21.

Abstract

Chondroitinase B from Pedobacter heparinus is the only known enzyme strictly specific for dermatan sulfate and is a widely used enzymatic tool for the structural characterization of glycosaminoglycans. This beta-helical polysaccharide lyase belongs to family PL-6 and cleaves the beta(1,4) linkage of dermatan sulfate in a random manner, yielding 4,5-unsaturated dermatan sulfate disaccharides as the product. The previously reported structure of its complex with a dermatan sulfate disaccharide product identified the -1 and -2 subsites of the catalytic groove. We present here the structure of chondroitinase B complexed with several dermatan sulfate and chondroitin sulfate oligosaccharides. In particular, the soaking of chondroitinase B crystals with a dermatan sulfate hexasaccharide results in a complex with two dermatan sulfate disaccharide reaction products, enabling the identification of the +2 and +1 subsites. Unexpectedly, this structure revealed the presence of a calcium ion coordinated by sequence-conserved acidic residues and by the carboxyl group of the l-iduronic acid at the +1 subsite. Kinetic and site-directed mutagenesis experiments have subsequently demonstrated that chondroitinase B absolutely requires calcium for its activity, indicating that the protein-Ca(2+)-oligosaccharide complex is functionally relevant. Modeling of an intact tetrasaccharide in the active site of chondroitinase B provided a better understanding of substrate specificity and the role of Ca(2+) in enzymatic activity. Given these results, we propose that the Ca(2+) ion neutralizes the carboxyl moiety of the l-iduronic acid at the cleavage site, whereas the conserved residues Lys-250 and Arg-271 act as Brønsted base and acid, respectively, in the lytic degradation of dermatan sulfate by chondroitinase B.

摘要

来自肝素土杆菌的硫酸软骨素酶B是唯一已知的对硫酸皮肤素具有严格特异性的酶,是用于糖胺聚糖结构表征的广泛使用的酶学工具。这种β-螺旋多糖裂解酶属于PL-6家族,以随机方式切割硫酸皮肤素的β(1,4)键,产生4,5-不饱和硫酸皮肤素二糖作为产物。先前报道的其与硫酸皮肤素二糖产物复合物的结构确定了催化凹槽的-1和-2亚位点。我们在此展示了与几种硫酸皮肤素和硫酸软骨素寡糖复合的硫酸软骨素酶B的结构。特别地,用硫酸皮肤素六糖浸泡硫酸软骨素酶B晶体导致形成含有两种硫酸皮肤素二糖反应产物的复合物,从而能够鉴定+2和+1亚位点。出乎意料的是,该结构揭示了在+1亚位点存在由序列保守的酸性残基和l-艾杜糖醛酸的羧基配位的钙离子。随后的动力学和定点诱变实验表明,硫酸软骨素酶B的活性绝对需要钙,这表明蛋白质-Ca(2+)-寡糖复合物在功能上是相关的。对硫酸软骨素酶B活性位点中完整四糖的建模有助于更好地理解底物特异性以及Ca(2+)在酶活性中的作用。基于这些结果,我们提出Ca(2+)离子中和切割位点处l-艾杜糖醛酸的羧基部分,而保守残基Lys-250和Arg-271在硫酸软骨素酶B对硫酸皮肤素的裂解降解中分别作为布朗斯特碱和酸起作用。

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