首页> 外文期刊>Journal of Agricultural and Food Chemistry >Improvement of the Activity and Stability of Starch-Debranching Pullulanase from Bacillus naganoensis via Tailoring of the Active Sites Lining the Catalytic Pocket
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Improvement of the Activity and Stability of Starch-Debranching Pullulanase from Bacillus naganoensis via Tailoring of the Active Sites Lining the Catalytic Pocket

机译:通过剪裁催化口袋的活性位点剪裁,改善来自芽孢杆菌芽孢杆菌的淀粉脱枝淀粉酶的活性和稳定性

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摘要

Pullulanases are well-known debranching enzymes that hydrolyze alpha-1,6-glycosidic linkages in starch and oligosaccharides. However, most of the pullulanases exhibit limited activity for practical applications. Here, two sites (787 and 621) lining the catalytic pocket of Bacillus naganoensis pullulanase were identified as being critical for enzymatic activity by triple-code saturation mutagenesis. Subsequently, both sites were subjected to NNK-based saturation mutagenesis to obtain positive variants. Among the variants showing enhanced activity, the enzymatic activity and specific activity of D787C were 1.5-fold higher than those of the wild-type (WT). D787C also showed a 1.8-fold increase in k cat and a 1.7-fold increase in k(cat)/K-m. In addition, D787C maintained higher activity compared with that of WT at temperatures over 60 degrees C. All the positive variants showed higher acid resistance, with D787C maintaining 90% residual activity at pH 4.0. Thus, enzymes with improved properties were obtained by saturation mutagenesis at the active site.
机译:支链淀粉酶是公知的脱支酶在淀粉和低聚糖水解α-1,6糖苷键。然而,大多数的支链淀粉的表现出实际应用有限的活动。在这里,两个站点(787和621)衬芽孢杆菌naganoensis普鲁兰酶催化口袋被确定为供三码饱和突变酶活性是至关重要的。随后,这两个站点进行基于NNK饱和诱变来获得阳性变体。之间的变体显示增强的活性,酶活性和D787C的比活性明显低于野生型(WT)的1.5倍。 D787C也显示在k-猫1.8倍增加和K(猫)1.7倍的增加/ K-m的。此外,D787C与在温度超过60℃的所有WT相比保持较高的活性的正变体显示出更高的耐酸性,具有D787C维持90%的残余活性,在pH 4.0。因此,通过饱和诱变在活性位点获得的具有改善的性质的酶。

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