首页> 美国卫生研究院文献>Biochemical Journal >Biosynthesis of dermatan sulphate. Defructosylated Escherichia coli K4 capsular polysaccharide as a substrate for the D-glucuronyl C-5 epimerase and an indication of a two-base reaction mechanism.
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Biosynthesis of dermatan sulphate. Defructosylated Escherichia coli K4 capsular polysaccharide as a substrate for the D-glucuronyl C-5 epimerase and an indication of a two-base reaction mechanism.

机译:硫酸皮肤素的生物合成。果糖基化的大肠杆菌K4荚膜多糖作为D-葡萄糖醛酸C-5差向异构酶的底物并表明有两个碱基的反应机理。

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摘要

The capsular polysaccharide from Escherichia coli K4 consists of a chondroitin ([GlcA(beta 1-->3)GalNAc(beta 1-->4)]n) backbone, to which beta-fructofuranose units are linked to C-3 of D-glucuronic acid (GlcA) residues. Removal of the fructose units by mild acid hydrolysis provided a substrate for the GlcA C-5 epimerase, which is involved in the generation of L-iduronic acid (IdoA) units during dermatan sulphate biosynthesis. Incubation of this substrate with solubilized fibroblast microsomal enzyme in the presence of 3H2O resulted in the incorporation of tritium at C-5 of hexuronyl units. A Km of 67 x 10(-6) M hexuronic acid (equivalent to disaccharide units) was determined, which is similar to that (80 x 10(-6) M) obtained for dermatan (desulphated dermatan sulphate). Vmax was about 4 times higher with dermatan than with the K4 substrate. A defructosylated K4 polysaccharide isolated after incubation of bacteria with D-[5-3H]glucose released 3H2O on reaction with the epimerase, and thus could be used to assay the enzyme. Incubation of a K4 substrate with solubilized microsomal epimerase for 6 h in the presence of 3H2O resulted in the formation of about 5% IdoA and approximately equal amounts of 3H in GlcA and IdoA. A corresponding incubation of dermatan yielded approx. 22% GlcA, which contained virtually all the 3H label. These results are tentatively explained in terms of a two-base reaction mechanism, involving a monoprotic L-ido-specific base and a polyprotic D-gluco-specific base. Most of the IdoA residues generated by the enzyme occurred singly, although some formation of two or three consecutive IdoA-containing disaccharide units was observed.
机译:来自大肠杆菌K4的荚膜多糖由软骨素([GlcA(beta 1-> 3)GalNAc(beta 1-> 4)] n)骨架组成,β-果糖呋喃糖单元与D的C-3连接-葡萄糖醛酸(GlcA)残基。通过温和的酸水解去除果糖单元提供了GlcA C-5差向异构酶的底物,该酶参与硫酸皮肤素生物合成过程中L-艾杜糖酸(IdoA)单元的产生。在3H2O存在下,该底物与增溶的成纤维细胞微粒体酶一起孵育,导致he在C-5的十六碳酰基单元中掺入。测定的Km为67 x 10(-6)M的己糖醛酸(相当于二糖单位),类似于皮肤素(脱硫酸皮肤素硫酸盐)的Km(80 x 10(-6)M)。皮肤素的Vmax约为K4底物的4倍。将细菌与D- [5-3H]葡萄糖孵育后分离出的果糖基化K4多糖在与差向异构酶反应后释放3H2O,因此可用于分析该酶。在3H2O存在下,将K4底物与增溶的微粒体差向异构酶一起孵育6小时,导致在GlcA和IdoA中形成约5%的IdoA和约等量的3H。皮肤素的相应温育产生约。 22%的GlcA,其中几乎包含所有3H标签。这些结果暂定以两碱基反应机理来解释,该机理涉及单质子L-ido-特异性碱基和多质子D-葡萄糖-特异性碱基。尽管观察到了两个或三个连续的含IdoA的二糖单元的形成,但大多数由酶产生的IdoA残基都是单独发生的。

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