Demirci Gökhan, Doğaç Yasemin İspirli, Teke Mustafa
Faculty of Chemistry, Polymer Chemistry, Maria Curie Skłodowska University, Lublin, Poland.
Faculty of Science, Department of Chemistry, Muğla Sıtkı Koçman University, Muğla, Turkey.
J Mol Recognit. 2015 Nov;28(11):645-50. doi: 10.1002/jmr.2475. Epub 2015 Apr 7.
In the present study, we immobilized acetylcholinesterase (AChE) enzyme onto acetylcholine removed imprinted polymer and acetylcholine containing polymer. First, the polymers were produced with acetylcholine, substrate of AChE, by dispersion polymerization. Then, the enzyme was immobilized onto the polymers by using two different methods: In the first method (method A), acetylcholine was removed from the polymer, and then AChE was immobilized onto this polymer (acetylcholine removed imprinted polymer). In the second method (method B), AChE was immobilized onto acetylcholine containing polymer by affinity. In method A, enzyme-specific species (binding sites) occurred by removing acetylcholine from the polymer. The immobilized AChE reached 240% relative specific activity comparison with free AChE because the active enzyme molecules bounded onto the polymer. Transmission electron microscopy results were taken before and after immobilization of AChE for the assessment of morphological structure of polymer. Also, the experiments, which include optimum temperature (25-65 °C), optimum pH (3-10), thermal stability (4-70 °C), kinetic parameters, operational stability and reusability, were performed to determine the characteristic of the immobilized AChE.
在本研究中,我们将乙酰胆碱酯酶(AChE)固定在去除乙酰胆碱的印迹聚合物和含乙酰胆碱的聚合物上。首先,通过分散聚合用AChE的底物乙酰胆碱制备聚合物。然后,使用两种不同的方法将酶固定在聚合物上:在第一种方法(方法A)中,从聚合物中去除乙酰胆碱,然后将AChE固定在该聚合物(去除乙酰胆碱的印迹聚合物)上。在第二种方法(方法B)中,通过亲和力将AChE固定在含乙酰胆碱的聚合物上。在方法A中,通过从聚合物中去除乙酰胆碱产生酶特异性物种(结合位点)。与游离AChE相比,固定化AChE的相对比活性达到240%,因为活性酶分子与聚合物结合。在固定化AChE前后进行透射电子显微镜观察,以评估聚合物的形态结构。此外,还进行了包括最佳温度(25 - 65℃)、最佳pH(3 - 10)、热稳定性(4 - 70℃)、动力学参数、操作稳定性和可重复使用性的实验,以确定固定化AChE的特性。