首页> 外文期刊>Archives of Biochemistry and Biophysics >Distinct metal dependence for catalytic and structural functions in the L-arabinose isomerases from the mesophilic Bacillus halodurans and the thermophilic Geobacillus stearothermophilus
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Distinct metal dependence for catalytic and structural functions in the L-arabinose isomerases from the mesophilic Bacillus halodurans and the thermophilic Geobacillus stearothermophilus

机译:不同金属对嗜温嗜碱性芽孢杆菌和嗜热嗜热嗜热地热芽孢杆菌L-阿拉伯糖异构酶中催化和结构功能的依赖性

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摘要

L-Arabinose isomerase (AI) catalyzes the isomerization Of L-arabinose to L-ribulose. It can also convert D-galactose to D-tagatose at elevated temperatures in the presence of divalent metal ions. The araA genes, encoding AI, from the mesophilic bacterium Bacillus halodurans and the thermophilic Geobacillus stearothemiophilus were cloned and overexpressed in Escherichia coli. and the recombinant enzymes were purified to homogeneity. The purified enzymes are homotetramers with a molecular mass of 232 kDa and close amino acid sequence identity (67%). However, they exhibit quite different temperature dependence and metal requirements. B. halodurans AI has maximal activity at 50 degreesC under the assay conditions used and is not dependent on divalent metal ions. Its apparent K,. values are 36mM for L-arabinose and 167mM for D-galactose. and the catalytic efficiencies (k(cat)/K-m) of the enzyme were 51.4 mM(-1) min(-1) (L-arabinose) and 0.4 mM(-1) min(-1) (D-galactose). Unlike B. halodurans AI, G. stearothermophilus AI has maximal activity at 65-70degreesC, and is strongly activated by Mn2+. It also has a much higher catalytic efficiency of 4.3 mM(-1) min(-1) for D-galactose and 32.5 mM(-1) min(-1) for L-arabinose, with apparent K-m values of 117 and 63 mM, respectively. Irreversible thermal denaturation experiments using circular dichroism (CD) spectroscopy showed that the apparent melting temperature of B. halodurans At (T-m = 65-67degreesC) was unaffected by the presence of metal ions, whereas EDTA-treated G. swearothermophilus AI had a lower T-m (72degreesC) than the holoenzyme (78degreesC). CD studies of both enzymes demonstrated that metal-mediated significant conformational changes were found in holo G. stearothermophilus AI, and there is an active tertiary structure for G. stearothermophilus AI at elevated temperatures for its catalytic activity. This is in marked contrast to the mesophilic B. halodurans AI where cofactor coordination is not necessary for proper protein folding. The metal dependence of G. stearothermophilus AI seems to be correlated with their catalytic and structural functions. We therefore propose that the metal ion requirement of the thermophilic G. stearothermophilus AI reflects the need to adopt the correct substrate-binding conformation and the structural stability at elevated temperatures. (C) 2004 Elsevier Inc. All rights reserved.
机译:L-阿拉伯糖异构酶(AI)催化L-阿拉伯糖异构化为L-核糖。在二价金属离子存在下,它还可以在升高的温度下将D-半乳糖转化为D-塔格糖。克隆了嗜温细菌嗜碱性芽孢杆菌和嗜热嗜热嗜热地芽孢杆菌的araA基因,编码AI,并在大肠杆菌中过表达。并纯化重组酶至同质。纯化的酶是同四聚体,分子量为232 kDa,氨基酸序列相同(67%)。但是,它们表现出完全不同的温度依赖性和金属要求。 B. halodurans AI在所使用的测定条件下在50摄氏度下具有最大活性,并且不依赖于二价金属离子。其表观K ,。 L-阿拉伯糖的值为36mM,D-半乳糖的值为167mM。酶的催化效率(k(cat)/ K-m)为51.4 mM(-1)min(-1)(L-阿拉伯糖)和0.4 mM(-1)min(-1)(D-半乳糖)。与嗜盐芽孢杆菌AI不同,嗜热脂肪芽孢杆菌AI在65-70摄氏度下具有最大活性,并被Mn2 +强烈激活。它对D-半乳糖的催化效率也更高,分别为4.3 mM(-1)min(-1)和L-阿拉伯糖32.5 mM(-1)min(-1),表观Km值为117和63 mM , 分别。使用圆二色性(CD)光谱进行的不可逆热变性实验表明,嗜盐芽孢杆菌At(Tm = 65-67°C)的表观熔融温度不受金属离子的影响,而EDTA处理的G. swearothermophilus AI具有较低的Tm (72摄氏度)比全酶(78摄氏度)高。对这两种酶的CD研究表明,在整体嗜热脂肪嗜热菌AI中发现了金属介导的显着构象变化,并且在升高的催化活性下,嗜热脂肪嗜热菌AI具有活跃的三级结构。这与嗜温的嗜盐芽孢杆菌AI形成鲜明对比,在嗜温芽孢杆菌中,辅因子的协调对于正确的蛋白质折叠不是必需的。嗜热链球菌AI的金属依赖性似乎与其催化和结构功能有关。因此,我们提出嗜热嗜热脂肪铁菌AI的金属离子需求反映了需要采用正确的底物结合构象和在高温下的结构稳定性。 (C)2004 Elsevier Inc.保留所有权利。

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