Suppr超能文献

参与硫酸软骨素生物合成的血清β-葡萄糖醛酸转移酶的特性分析。

Characterization of serum beta-glucuronyltransferase involved in chondroitin sulfate biosynthesis.

作者信息

Kitagawa H, Ujikawa M, Tsutsumi K, Tamura J, Neumann K W, Ogawa T, Sugahara K

机构信息

Department of Biochemistry, Kobe Pharmaceutical University, Japan.

出版信息

Glycobiology. 1997 Oct;7(7):905-11. doi: 10.1093/glycob/7.7.905.

Abstract

We studied a glucuronyltransferase involved in chondroitin sulfate (CS) biosynthesis in a preparation obtained from fetal bovine serum by heparin-Sepharose affinity chromatography. This enzyme transferred GlcA from UDP-GlcA to the nonreducing GalNAc residues of polymeric chondroitin. It required Mn2+ for maximal activity and showed a sharp pH optimum between pH 5.5 and 6.0. The apparent Km value of the glucuronyltransferase for UDP-GlcA was 51 microM. The specificity was investigated using structurally defined acceptor substrates, which consisted of chemically synthesized tri-, penta-, and heptasaccharide-serines and various odd-numbered oligosaccharides with a GalNAc residue at the nonreducing terminus, prepared from chondroitin and CS by chondroitinase ABC digestion followed by mercuric acetate treatment. The enzyme utilized a heptasaccharide-serine GalNAc beta 1-4GlcA beta 1-3GalNAc beta 1-4GlcA beta 1-3Gal beta 1-3Gal beta 1-4Xyl beta 1-O-Ser and a pentasaccharide-serine GalNAc beta 1-4GlcA beta 1-3Gal beta 1-3Gal beta 1-4Xyl beta 1-O-Ser as acceptors. In contrast, neither a trisaccharide-serine Gal beta 1-3Gal beta 1-4Xyl beta 1-O-Ser nor an alpha-GalNAc-capped pentasaccharide-serine GalNAc alpha 1-4GlcA beta 1-3Gal beta 1-3Gal beta 1-4Xyl beta 1-O-Ser that is a model compound of the reaction product formed by the action of the alpha-GalNAc transferase recently demonstrated in fetal bovine serum (Kitagawa et al., J. Biol. Chem., 270, 22190-22195, 1995) was utilized as an acceptor. Besides, all nonsulfated odd-numbered oligosaccharides except for the trisaccharide GalNAc beta 1-4GlcA beta 1-3GalNAc served as acceptors and the transfer rates roughly increased with increasing chain length. Moreover, 6-O-sulfation of nonreducing terminal GalNAc markedly enhanced GlcA transfer, whereas 4-O-sulfation had little effect on it. These results indicated that at least two glucuronyltransferases are involved in the biosynthesis of CS and that sulfation reactions may play important roles in chain elongation.

摘要

我们在通过肝素 - 琼脂糖亲和层析从胎牛血清中获得的一种制剂中研究了一种参与硫酸软骨素(CS)生物合成的葡萄糖醛酸转移酶。这种酶将来自UDP - GlcA的GlcA转移到聚合硫酸软骨素的非还原端GalNAc残基上。它需要Mn2 +才能达到最大活性,并且在pH 5.5至6.0之间表现出明显的最适pH值。该葡萄糖醛酸转移酶对UDP - GlcA的表观Km值为51 microM。使用结构明确的受体底物研究了其特异性,这些底物由化学合成的三糖 - 丝氨酸、五糖 - 丝氨酸和七糖 - 丝氨酸以及各种在非还原端带有GalNAc残基的奇数寡糖组成,这些寡糖是通过软骨素酶ABC消化软骨素和CS,然后用醋酸汞处理制备的。该酶利用七糖 - 丝氨酸GalNAcβ1 - 4GlcAβ1 - 3GalNAcβ1 - 4GlcAβ1 - 3Galβ1 - 3Galβ1 - 4Xylβ1 - O - Ser和五糖 - 丝氨酸GalNAcβ1 - 4GlcAβ1 - 3Galβ1 - 3Galβ1 - 4Xylβ1 - O - Ser作为受体。相比之下,三糖 - 丝氨酸Galβ1 - 3Galβ1 - 4Xylβ1 - O - Ser和α - GalNAc封端的五糖 - 丝氨酸GalNAcα1 - 4GlcAβ1 - 3Galβ1 - 3Galβ1 - 4Xylβ1 - O - Ser(这是最近在胎牛血清中证明的由α - GalNAc转移酶作用形成的反应产物的模型化合物)均未被用作受体。此外,除了三糖GalNAcβ1 - 4GlcAβ1 - 3GalNAc外,所有非硫酸化的奇数寡糖都可作为受体,并且转移速率大致随链长增加而增加。此外,非还原端GalNAc的6 - O - 硫酸化显著增强了GlcA转移,而4 - O - 硫酸化对其影响不大。这些结果表明,至少有两种葡萄糖醛酸转移酶参与CS的生物合成,并且硫酸化反应可能在链延长中起重要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验