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间隔长度在新型 Gemini 咪唑鎓表面活性剂与米根霉脂肪酶相互作用中的作用

Role of spacer length in interaction between novel gemini imidazolium surfactants and Rhizopus oryzae lipase.

作者信息

Adak Sunita, Datta Sougata, Bhattacharya Santanu, Banerjee Rintu

机构信息

Department of Agricultural & Food Engineering, Indian Institute of Technology, Kharagpur 721302, India.

Department of Organic Chemistry, Indian Institute of Science, Bangalore 560012, India.

出版信息

Int J Biol Macromol. 2015 Nov;81:560-7. doi: 10.1016/j.ijbiomac.2015.08.051. Epub 2015 Aug 28.

Abstract

An insight into the effects of new ionic liquid-type gemini imidazolium cationic surfactants on the structure and function of the lipases is of prime importance for their potential application. Changes in the activity, stability and structure of Rhizopus oryzae lipase in the presence of novel gemini surfactants, [C16-3-C16im]Br2 and [C16-12-C16im]Br2 were probed in the present study. Surfactant with shorter spacer length, [C16-3-C16im]Br2 was found to be better in improving the hydrolytic activity and thermal stability of the lipase. For both the surfactants, activation was concentration dependent. CD spectroscopy results showed a decrease in α-helix and an increase in β-sheet content in the presence of these surfactants. A higher structural change observed in presence of [C16-12-C16im]Br2 correlated with lower enzyme activity. Isothermal titration calorimetric studies showed the binding to be spontaneous in nature based on sequential two site binding model. The forces involved in binding were found to differ for the two surfactants proving that the spacer length is an important factor which governs the interaction. These surfactants could be used as promising components both in enzyme modification and media engineering for attaining the desired goals in biocatalytic reactions.

摘要

深入了解新型离子液体型双子咪唑鎓阳离子表面活性剂对脂肪酶结构和功能的影响对于其潜在应用至关重要。本研究探讨了在新型双子表面活性剂[C16-3-C16im]Br2和[C16-12-C16im]Br2存在下米根霉脂肪酶的活性、稳定性和结构变化。发现间隔长度较短的表面活性剂[C16-3-C16im]Br2在提高脂肪酶的水解活性和热稳定性方面表现更好。对于这两种表面活性剂,活化作用均与浓度有关。圆二色光谱结果表明,在这些表面活性剂存在下,α-螺旋减少,β-折叠含量增加。在[C16-12-C16im]Br2存在下观察到的更高结构变化与更低的酶活性相关。等温滴定量热研究表明,基于顺序双位点结合模型,结合是自发进行的。发现两种表面活性剂结合所涉及的力不同,这证明间隔长度是控制相互作用的重要因素。这些表面活性剂可作为有前景的成分用于酶修饰和介质工程,以在生物催化反应中实现预期目标。

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