首页> 美国卫生研究院文献>Journal of Bacteriology >Purification and cloning of a thermostable xylose (glucose) isomerase with an acidic pH optimum from Thermoanaerobacterium strain JW/SL-YS 489.
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Purification and cloning of a thermostable xylose (glucose) isomerase with an acidic pH optimum from Thermoanaerobacterium strain JW/SL-YS 489.

机译:从嗜热厌氧杆菌JW / SL-YS 489获得最佳酸性酸性的热稳定木糖(葡萄糖)异构酶的纯化和克隆。

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摘要

An unusual xylose isomerase produced by Thermoanaerobacterium strain JW/SL-YS 489 was purified 28-fold to gel electrophoretic homogeneity, and the biochemical properties were determined. Its pH optimum distinguishes this enzyme from all other previously described xylose isomerases. The purified enzyme had maximal activity at pH 6.4 (60 degrees C) or pH 6.8 (80 degrees C) in a 30-min assay, an isoelectric point at 4.7, and an estimated native molecular mass of 200 kDa, with four identical subunits of 50 kDa. Like other xylose isomerases, this enzyme required Mn2+, Co2+, or Mg2+ for thermal stability (stable for 1 h at 82 degrees C in the absence of substrate) and isomerase activity, and it preferred xylose as a substrate. The gene encoding the xylose isomerase was cloned and expressed in Escherichia coli, and the complete nucleotide sequence was determined. Analysis of the sequence revealed an open reading frame of 1,317 bp that encoded a protein of 439 amino acid residues with a calculated molecular mass of 50 kDa. The biochemical properties of the cloned enzyme were the same as those of the native enzyme. Comparison of the deduced amino acid sequence with sequences of other xylose isomerases in the database showed that the enzyme had 98% homology with a xylose isomerase from a closely related bacterium, Thermoanaerobacterium saccharolyticum B6A-RI. In fact, only seven amino acid differences were detected between the two sequences, and the biochemical properties of the two enzymes, except for the pH optimum, are quite similar. Both enzymes had a temperature optimum at 80 degrees C, very similar isoelectric points (pH 4.7 for strain JW/SL-YS 489 and pH 4.8 for T. saccharolyticum B6A-RI), and slightly different thermostabilities (stable for 1 h at 80 and 85 degrees C, respectively). The obvious difference was the pH optimum (6.4 to 6.8 and 7.0 to 7.5, respectively). The fact that the pH optimum of the enzyme from strain JW/SL-YS 489 was the property that differed significantly from the T. saccharolyticum B6A-RI xylose isomerase suggested that one or more of the observed amino acid changes was responsible for this observed difference.
机译:将热厌氧菌株JW / SL-YS 489产生的异常木糖异构酶纯化28倍,以实现凝胶电泳均质,并测定其生化特性。其最适pH值使该酶与所有其他先前描述的木糖异构酶区分开。在30分钟的测定中,纯化的酶在pH 6.4(60摄氏度)或pH 6.8(80摄氏度)下具有最大活性,等电点为4.7,估计的天然分子量为200 kDa,具有四个相同的亚基50 kDa。像其他木糖异构酶一样,该酶需要Mn2 +,Co2 +或Mg2 +来提高热稳定性(在没有底物的情况下,在82摄氏度下稳定1小时)和异构酶活性,因此优选木糖作为底物。克隆了编码木糖异构酶的基因,并在大肠杆菌中表达,并确定了完整的核苷酸序列。对该序列的分析揭示了一个1,317 bp的开放阅读框,它编码了439个氨基酸残基的蛋白质,计算的分子量为50 kDa。克隆酶的生化特性与天然酶相同。数据库中推导的氨基酸序列与其他木糖异构酶序列的比较表明,该酶与密切相关的细菌嗜热厌氧杆菌B6A-RI的木糖异构酶具有98%的同源性。实际上,在两个序列之间仅检测到七个氨基酸差异,并且除了最适pH值外,这两种酶的生化特性非常相似。两种酶的最佳温度均在80摄氏度,等电点非常相似(菌株JW / SL-YS 489的pH 4.7和解糖梭菌B6A-RI的pH 4.8),并且热稳定性稍有不同(在80℃和1℃下稳定1小时)。分别为85摄氏度)。最明显的区别是最适pH(分别为6.4至6.8和7.0至7.5)。来自菌株JW / SL-YS 489的酶的最适pH值具有与解糖丁糖酵母B6A-RI木糖异构酶显着不同的特性这一事实表明,一个或多个观察到的氨基酸变化是造成这一观察到的差异的原因。

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