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Biochemical characterization of engineered amylopullulanase from Thermoanaerobacter ethanolicus 39E-implicating the non-necessity of its 100 C-terminal amino acid residues

机译:乙醇热嗜热厌氧菌39E的工程化淀粉葡聚糖酶的生化特性-不需要其100个C端氨基酸残基

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The functional and structural significance of the C-terminal region of Thermoanaerobacter ethanolicus 39E amylopullulanase (TetApu) was explored using C-terminal truncation mutagenesis. Comparative studies between the engineered full-length (TetApuM955) and its truncated mutant (TetApuR855) included initial rate kinetics, fluorescence and CD spectrometric properties, substrate-binding and hydrolysis abilities, thermostability, and thermodenaturation kinetics. Kinetic analyses revealed that the overall catalytic efficiency, k cat/K m, was slightly decreased for the truncated enzymes toward the soluble starch or pullulan substrate. Changes to the substrate affinity, K m, and turnover rate, k cat, varied in different directions for both types of substrates between TetApuM955 and TetApuR855. TetApuR855 exhibited a higher thermostability than TetApuM955, and retained similar substrate-binding ability and hydrolyzing efficiency against the raw starch substrate as TetApuM955 did. Fluorescence spectroscopy indicated that TetApuR855 retained an active folding conformation similar to TetApuM955. A CD-melting unfolding study was able to distinguish between TetApuM955 and TetApuR855 by the higher apparent transition temperature in TetApuR855. These results indicate that up to 100 amino acid residues, including most of the C-terminal fibronectin typeIII (FnIII) motif of TetApuM955, could be further removed without causing a seriously aberrant change in structure and a dramatic decrease in soluble starch and pullulan hydrolysis.
机译:乙醇热嗜热菌39E支链淀粉淀粉酶(TetApu)的C端区域的功能和结构意义进行了探讨,利用C端截短诱变。工程全长(TetApuM955)及其截短的突变体(TetApuR855)之间的比较研究包括初始速率动力学,荧光和CD光谱特性,底物结合和水解能力,热稳定性和热变性动力学。动力学分析表明,截短的酶向可溶性淀粉或支链淀粉底物的总催化效率k cat / K m 略有降低。在TetApuM955和TetApuR855之间,两种底物的底物亲和力K m 和周转率k cat 的变化在不同的方向上变化。 TetApuR855具有比TetApuM955更高的热稳定性,并且与TetApuM955相比,对生淀粉底物保持了相似的底物结合能力和水解效率。荧光光谱表明,TetApuR855保留了类似于TetApuM955的活性折叠构象。 CD融解展开研究能够通过TetApuR855中较高的表观转变温度来区分TetApuM955和TetApuR855。这些结果表明,可以进一步去除多达100个氨基酸残基,包括TetApuM955的大多数C端纤连蛋白III型(FnIII)基序,而不会引起结构上的严重异常变化以及可溶性淀粉和支链淀粉水解的急剧减少。

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