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棕色固氮菌甘露糖醛酸-C-5-表异构酶AlgE1的A模块对于C5差向异构化和Ca2+结合均已足够。

The A modules of the Azotobacter vinelandii mannuronan-C-5-epimerase AlgE1 are sufficient for both epimerization and binding of Ca2+.

作者信息

Ertesvåg H, Valla S

机构信息

UNIGEN Center for Molecular Biology and Department of Biotechnology, Norwegian University of Technology and Science, N-7489 Trondheim, Norway.

出版信息

J Bacteriol. 1999 May;181(10):3033-8. doi: 10.1128/JB.181.10.3033-3038.1999.

Abstract

The industrially important polysaccharide alginate is composed of the two sugar monomers beta-D-mannuronic acid (M) and its epimer alpha-L-guluronic acid (G). In the bacterium Azotobacter vinelandii, the G residues originate from a polymer-level reaction catalyzed by one periplasmic and at least five secreted mannuronan C-5-epimerases. The secreted enzymes are composed of repeats of two protein modules designated A (385 amino acids) and R (153 amino acids). The modular structure of one of the epimerases, AlgE1, is A1R1R2R3A2R4. This enzyme has two catalytic sites for epimerization, each site introducing a different G distribution pattern, and in this article we report the DNA-level construction of a variety of truncated forms of the enzyme. Analyses of the properties of the corresponding proteins showed that an A module alone is sufficient for epimerization and that A1 catalyzed the formation of contiguous stretches of G residues in the polymer, while A2 introduces single G residues. These differences are predicted to strongly affect the physical and immunological properties of the reaction product. The epimerization reaction is Ca2+ dependent, and direct binding studies showed that both the A and R modules bind this cation. The R modules appeared to reduce the Ca2+ concentration needed for full activity and also stimulated the reaction rate when positioned both N and C terminally.

摘要

具有重要工业价值的多糖海藻酸盐由两种糖单体β-D-甘露糖醛酸(M)及其差向异构体α-L-古洛糖醛酸(G)组成。在棕色固氮菌中,G残基源自一种周质和至少五种分泌型甘露糖醛酸C-5-差向异构酶催化的聚合物水平反应。分泌型酶由两个指定为A(385个氨基酸)和R(153个氨基酸)的蛋白质模块重复组成。其中一种差向异构酶AlgE1的模块结构为A1R1R2R3A2R4。该酶有两个差向异构化催化位点,每个位点引入不同的G分布模式,在本文中我们报道了该酶多种截短形式的DNA水平构建。对相应蛋白质性质的分析表明,单独一个A模块就足以进行差向异构化,且A1催化聚合物中连续G残基的形成,而A2引入单个G残基。预计这些差异会强烈影响反应产物的物理和免疫性质。差向异构化反应依赖Ca2+,直接结合研究表明A和R模块都能结合这种阳离子。R模块似乎降低了实现完全活性所需的Ca2+浓度,并且当位于N端和C端时还能刺激反应速率。

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