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Polymeric Switch on Lysozyme Activity: Role of Hydrophobic and Electrostatic Interactions

机译:溶菌酶活性的聚合物开关:疏水和静电相互作用的作用

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Enzymes have attracted potential applications in both medicine and biotechnology. In our present study, we show a strategy for switching the enzymatic activity of lysozyme by the complex formation with a cationic smart copolymer. PAMA- g -PEG graft copolymers suppressed the enzymatic activity of lysozyme without any conformational change, indicating the formation of complex and covering the active site of lysozyme by copolymers. The addition of polyanion, poly(acrylic acid) (PAAc), recovered the suppressed enzymatic activity of the lysozyme/polymer complex efficiently. These finding suggest that that hydrophobic interaction coupled with electrostatic interactions has a great role for the complexation and decomplexation of the lysozyme/polymer complex. Circular dichroism (CD) spectral analysis indicated that the conformation of the enzymes maintained largely during the course of the complexation.
机译:酶已在医学和生物技术领域吸引了潜在的应用。在我们目前的研究中,我们显示了通过与阳离子智能共聚物形成复合物来切换溶菌酶的酶活性的策略。 PAMA-g-PEG接枝共聚物抑制了溶菌酶的酶活性,而没有任何构象变化,表明形成了复合物并通过共聚物覆盖了溶菌酶的活性位点。聚阴离子聚丙烯酸(PAAc)的添加有效地恢复了溶菌酶/聚合物复合物抑制的酶活性。这些发现表明,疏水相互作用与静电相互作用对溶菌酶/聚合物复合物的络合和分解具有重要作用。圆二色性(CD)光谱分析表明,酶的构象在络合过程中主要保持。

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