首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Analysis of the activation of acetylcholinesterase by carbon nanoparticles using a monolithic immobilized enzyme microreactor: role of the water molecules in the active site gorge
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Analysis of the activation of acetylcholinesterase by carbon nanoparticles using a monolithic immobilized enzyme microreactor: role of the water molecules in the active site gorge

机译:使用整体式固定化酶微反应器分析碳纳米颗粒对乙酰胆碱酯酶的激活:水分子在活性位点峡谷中的作用

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Abstract A biochromatographic system was used to study the direct effect of carbon nanoparticles (CNPs) on the acetylcholinesterase (AChE) activity. The AChE enzyme was covalently immobilized on a monolithic CIM-disk via its NH2 residues. Our results showed an increase in the AChE activity in presence of CNPs. The catalytic constant (kcat) was increased while the Michaelis constant (Km) was slightly decreased. This indicated an increase in the enzyme efficiency with increase of the substrate affinity to the active site. The thermodynamic data of the activation mechanism of the enzyme, i.e. ΔH* and ΔS*, showed no change in the substrate interaction mechanism with the anionic binding site. The increase of the enthalpy (ΔH*) and the entropy (ΔS*) with decrease in the free energy of activation (Ea) was related to structural conformation change in the active site gorge. This affected the stability of water molecules in the active site gorge and facilitated water displacement by substrate for entering to the active site of the enzyme.
机译:摘要利用生物色谱系统研究了碳纳米颗粒(CNP)对乙酰胆碱酯酶(AChE)活性的直接影响。 AChE酶通过其NH 2 残基共价固定在整体CIM磁盘上。我们的结果显示,存在CNP时,AChE活性增加。催化常数(k cat )增加,而米氏常数(K m )略有降低。这表明酶效率随着底物对活性位点的亲和力增加而增加。酶活化机理的热力学数据,即ΔH*和ΔS*,显示出与阴离子结合位点的底物相互作用机理没有变化。焓(ΔH*)和熵(ΔS*)随激活自由能(Ea)的减少而增加,与活性位点峡谷中的结构构象变化有关。这影响了活性位点峡谷中水分子的稳定性,并促进了水被底物置换进入酶的活性位点。

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