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首页> 外文期刊>Applied and Environmental Microbiology >Characterization of a Thermoacidophilic l-Arabinose Isomerase from Alicyclobacillus acidocaldarius: Role of Lys-269 in pH Optimum
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Characterization of a Thermoacidophilic l-Arabinose Isomerase from Alicyclobacillus acidocaldarius: Role of Lys-269 in pH Optimum

机译:酸热脂环酸嗜热l-阿拉伯糖异构酶的表征:Lys-269在最适pH中的作用

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The araA gene encoding l-arabinose isomerase (AI) from the thermoacidophilic bacterium Alicyclobacillus acidocaldarius was cloned, sequenced, and expressed in Escherichia coli. Analysis of the sequence revealed that the open reading frame of the araA gene consists of 1,491 bp that encodes a protein of 497 amino acid residues with a calculated molecular mass of 56,043 Da. Comparison of the deduced amino acid sequence of A.?acidocaldarius AI (AAAI) with other AIs demonstrated that AAAI has 97% and 66% identities (99% and 83% similarities) to Geobacillus stearothermophilus AI (GSAI) and Bacillus halodurans AI (BHAI), respectively. The recombinant AAAI was purified to homogeneity by heat treatment, ion-exchange chromatography, and gel filtration. The purified enzyme showed maximal activity at pH 6.0 to 6.5 and 65°C under the assay conditions used, and it required divalent cations such as Mn2+, Co2+, and Mg2+ for its activity. The isoelectric point (pI) of the enzyme was about 5.0 (calculated pI of 5.5). The apparent Km values of the recombinant AAAI for l-arabinose and d-galactose were 48.0 mM (Vmax, 35.5 U/mg) and 129 mM (Vmax, 7.5 U/mg), respectively, at pH 6 and 65°C. Interestingly, although the biochemical properties of AAAI are quite similar to those of GSAI and BHAI, the three AIs from A. acidocaldarius (pH 6), G. stearothermophilus (pH 7), and B. halodurans (pH 8) exhibited different pH activity profiles. Based on alignment of the amino acid sequences of these homologous AIs, we propose that the Lys-269 residue of AAAI may be responsible for the ability of the enzyme to act at low pH. To verify the role of Lys-269, we prepared the mutants AAAI-K269E and BHAI-E268K by site-directed mutagenesis and compared their kinetic parameters with those of wild-type AIs at various pHs. The pH optima of both AAAI-K269E and BHAI-E268K were rendered by 1.0 units (pH 6 to 7 and 8 to 7, respectively) compared to the wild-type enzymes. In addition, the catalytic efficiency (kcat/Km) of each mutant at different pHs was significantly affected by an increase or decrease in Vmax. From these results, we propose that the position corresponding to the Lys-269 residue of AAAI could play an important role in the determination of the pH optima of homologous AIs.
机译:克隆了嗜热嗜酸细菌酸热脂环酸杆菌的编码1-阿拉伯糖异构酶(AI)的araA基因,并在大肠杆菌中表达。对该序列的分析显示,araA基因的开放阅读框由1,491 bp组成,编码497个氨基酸残基的蛋白质,计算分子量为56,043 Da。推导的嗜酸链球菌AI(AAAI)与其他AI的氨基酸序列比较表明,AAAI与嗜热嗜热地热芽孢杆菌AI(GSAI)和芽孢杆菌具有97%和66%的同一性(99%和83%的相似性) halodurans AI(BHAI)。通过热处理,离子交换色谱和凝胶过滤将重组AAAI纯化至均质。纯化的酶在使用的测定条件下在pH 6.0至6.5和65°C下显示出最大活性,并且其活性需要二价阳离子(例如Mn2 +,Co2 +和Mg2 +)。酶的等电点(pI)约为5.0(计算得出的pI为5.5)。在pH 6和65°C下,重组AAAI的1-阿拉伯糖和d-半乳糖的表观Km值分别为48.0 mM(Vmax,35.5 U / mg)和129 mM(Vmax,7.5 U / mg)。有趣的是,尽管AAAI的生化特性与GSAI和BHAI十分相似,但是来自酸嗜酸杆菌(pH 6),嗜热脂肪嗜热菌(pH 7)和嗜盐芽孢杆菌(pH 8)的三种AI具有不同的pH活性。个人资料。基于这些同源AI的氨基酸序列的比对,我们建议AAAI的Lys-269残基可能负责酶在低pH下起作用的能力。为了验证Lys-269的作用,我们通过定点诱变制备了突变体AAAI-K269E和BHAI-E268K,并在不同pH下将它们的动力学参数与野生型AI进行了比较。与野生型酶相比,AAAI-K269E和BHAI-E268K的最适pH值均提高了1.0个单位(pH分别为6-7和8-7)。此外,每个突变体在不同pH下的催化效率(kcat / Km)受到Vmax的增加或降低的显着影响。根据这些结果,我们认为对应于AAAI的Lys-269残基的位置可能在确定同源AI的最适pH值中起重要作用。

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