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首页> 外文期刊>Applied Microbiology and Biotechnology >Characterization of recombinant amylopullulanase (gt-apu) and truncated amylopullulanase (gt-apuT) of the extreme thermophile Geobacillus thermoleovorans NP33 and their action in starch saccharification
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Characterization of recombinant amylopullulanase (gt-apu) and truncated amylopullulanase (gt-apuT) of the extreme thermophile Geobacillus thermoleovorans NP33 and their action in starch saccharification

机译:嗜热嗜热芽孢杆菌NP33的重组淀粉支链淀粉酶(gt-apu)和截短的淀粉支链淀粉酶(gt-apuT)的表征及其在淀粉糖化中的作用

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摘要

A gene encoding amylopullulanase (gt-apu) of the extremely thermophilic Geobacillus thermoleovorans NP33 was cloned and expressed in Escherichia coli. The gene has an open reading frame of 4,965 bp that encodes a protein of 1,655 amino acids with molecular mass of 182 kDa. The six conserved regions, characteristic of GH13 family, have been detected in gt-apu. The recombinant enzyme has only one active site for α-amylase and pullulanase activities based on the enzyme kinetic analyses in a system that contains starch as well as pullulan as competing substrates and response to inhibitors. The end-product analysis confirmed that this is an endoacting enzyme. The specific enzyme activities for α-amylase and pullulanase of the truncated amylopullulanase (gt-apuT) are higher than gt-apu. Both enzymes exhibited similar temperature (60 C) and pH (7.0) optima, although gt-apuT possessed a higher thermostability than gt-apu. The overall catalytic efficiency (K _(cat)/K _m) of gt-apuT is greater than that of gt-apu, with almost similar substrate specificities. The C-terminal region of gt-apu appeared to be non-essential, and furthermore, it negatively affects the substrate binding and stability of the enzyme.
机译:克隆了嗜热性嗜热芽孢杆菌NP33的编码支链淀粉酶(gt-apu)的基因,并在大肠杆菌中表达。该基因的开放阅读框为4,965 bp,编码一个1,655个氨基酸的蛋白质,分子量为182 kDa。在gt-apu中检测到了六个具有GH13家族特征的保守区。基于包含淀粉以及支链淀粉作为竞争底物和对抑制剂的反应的系统中的酶动力学分析,重组酶仅具有一个α-淀粉酶和支链淀粉酶活性的活性位点。最终产品分析证实这是一种内生酶。截短的淀粉葡聚糖酶(gt-apuT)的α-淀粉酶和支链淀粉酶的比酶活性高于gt-apu。尽管gt-apuT的热稳定性高于gt-apu,但两种酶的最佳温度(60°C)和pH(7.0)相似。 gt-apuT的总催化效率(K_(cat)/ K_m)大于gt-apuT,具有几乎相似的底物特异性。 gt-apu的C端区域似乎不是必需的,此外,它对底物的结合和酶的稳定性也有不利影响。

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