Department of Chemistry, Aligarh Muslim University, Aligarh, India.
Interdisciplinary Biotechnology Unit, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, India.
J Biomol Struct Dyn. 2023;41(21):12276-12291. doi: 10.1080/07391102.2023.2168759. Epub 2023 Jan 25.
The implications of surfactant-enzyme/protein interactions in a variety of fields, including biotechnology, cosmetics, paints and pharmaceuticals, have attracted a lot of attention in contemporary studies. Herein, we have employed several and techniques such as excitation and absorption spectroscopies, circular dichroism and FT-IR spectroscopies, density functional and molecular dynamics simulations to understand the interaction behavior of oxy-diester-based green cationic Gemini surfactants, N,N,N,N-tetramethyl-2,13-dioxo-N,N-dialkyl-3,6,12-tetraoxateradecane-1,14-diaminiumdichloride (abbreviated as C-E2O2-C, where 'm' stands for alkyl chain length, = 12 and 14) with one of the main digestive proteins, pepsin. The spectroscopic techniques confirm the static quenching effect of surfactants on pepsin. The calculated physical parameters (, and ) and their order reveal the distinguished implications for the surfactants' chain lengths. The spontaneity of interaction was also confirmed by negative Gibbs free energy change values. The extrinsic spectroscopic study with pyrene as fluorescence probe, FT-IR and CD techniques indicated a potential conformational change in pepsin induced by the Gemini surfactants. DFT, docking and MD simulations provided the theoretical understanding regarding the quantum mechanical environment, location of binding and stability of the protein-surfactant complexation in energy terms. We believe this study will be a humble addition to our existing knowledge in the field of protein-surfactant interactions.Communicated by Ramaswamy H. Sarma.
表面活性剂-酶/蛋白质相互作用在生物技术、化妆品、涂料和制药等多种领域的意义,在当代研究中引起了广泛关注。在此,我们采用了多种 和 技术,如激发和吸收光谱、圆二色性和傅里叶变换红外光谱、密度泛函和分子动力学模拟,以了解基于氧酯的绿色阳离子双子表面活性剂 N,N,N,N-四甲基-2,13-二氧代-N,N-二烷基-3,6,12-四氧代十六烷-1,14-二胺二盐酸盐(简称 C-E2O2-C,其中 'm' 代表烷基链长度,=12 和 14)与主要消化蛋白之一胃蛋白酶的相互作用行为。光谱技术证实了表面活性剂对胃蛋白酶的静态猝灭效应。计算得到的物理参数(、和)及其顺序揭示了表面活性剂链长的显著影响。负的吉布斯自由能变化值也证实了相互作用的自发性。以芘为荧光探针的外源性光谱研究、傅里叶变换红外和圆二色技术表明,双子表面活性剂诱导胃蛋白酶发生潜在构象变化。DFT、对接和 MD 模拟提供了关于蛋白质-表面活性剂复合物在量子力学环境、结合位置和能量稳定性方面的理论理解。我们相信,这项研究将为我们在蛋白质-表面活性剂相互作用领域的现有知识做出微薄的贡献。