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首页> 外文期刊>Biotechnology Progress >Probing the Active Site of Cellodextrin Phosphorylase from Clostridium stercomrium: Kinetic Characterization, Ligand Docking, and Site-Directed Mutagenesis
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Probing the Active Site of Cellodextrin Phosphorylase from Clostridium stercomrium: Kinetic Characterization, Ligand Docking, and Site-Directed Mutagenesis

机译:探测从梭状芽胞杆菌的纤维糊精磷酸化酶的活性位点:动力学表征,配体对接和定点诱变。

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Cellodextrin phosphorylase from Clostridium stercorarium has been recombinantly expressed in Escherichia coli for the first time. Kinetic characterization of the purified enzyme has revealed that aryl and alkyl β-glucosides can be efficiently glycosylated, an activity that has not yet been described for this enzyme class. To obtain a better understanding of the factors that determine the enzyme's specificity, homology modeling and ligand docking were applied. Residue W168 has been found to form a hydrophobic stacking interaction with the substrate in subsite +2, and its importance has been examined by means of site-directed mutagenesis. The mutant W168A retains about half of its catalytic activity, indicating that other residues also contribute to the binding affinity of subsite +2. Finally, residue D474 has been identified as the catalytic acid, interacting with the glycosidic oxygen between subsites —1 and +1. Mutating this residue results in complete loss of activity. These results, for the first time, provide an insight in the enzyme-substrate interactions that determine the activity and specificity of cellodextrin phosphorylases.
机译:stercorarium的纤维糊精磷酸化酶已首次在大肠杆菌中重组表达。纯化的酶的动力学特征表明,芳基和烷基β-葡萄糖苷可以被有效地糖基化,这一活性尚未针对该酶类别进行描述。为了更好地了解决定酶特异性的因素,应用了同源建模和配体对接。已发现残基W168与亚位点+2中的底物形成疏水性堆积相互作用,其重要性已通过定点诱变进行了研究。突变体W168A保留了大约一半的催化活性,表明其他残基也有助于亚位点+2的结合亲和力。最终,残基D474被鉴定为催化酸,与亚位点-1和+1之间的糖苷氧相互作用。突变此残基会导致活性完全丧失。这些结果首次提供了酶与底物相互作用的信息,这些相互作用决定了纤维糊精磷酸化酶的活性和特异性。

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