Akram Mohd, Lal Hira, Shakya Sonam
Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.
ACS Omega. 2020 Feb 14;5(7):3624-3637. doi: 10.1021/acsomega.9b04142. eCollection 2020 Feb 25.
Accumulation of different protein-surfactant mixtures affords further knowledge about the structure-property interactions of biomacromolecules. They will help design suitable surfactants, which, in turn, can enhance the utilization of protein-surfactant complexes in biotechnologies, cosmetics, and food industry realms. Owing to their adaptable and remarkably notable properties, we are describing herein the interaction of C -E2O-C gemini surfactants ( = 12, 14, and 16) with α-CHT by employing various spectroscopic techniques including with molecular docking and density functional theory (DFT) method. Results have revealed complex formation, unfolding, and a static quenching mechanism in the interaction of gemini surfactants with α-CHT. The Stern-Volmer constant ( ), quenching constant ( ), the number of binding sites (), and binding constant ( ) were interrogated by utilizing the fluorescence quenching method, UV-vis, synchronous, 3-D, and resonance Rayleigh scattering fluorescence studies. The data perceive the α-CHT-C -E2O-C complex formation along with conformational alterations induced in α-CHT. The contribution of aromatic residues to a nonpolar environment is illustrated by pyrene fluorescence. Fourier transform infrared spectroscopy and circular dichroism outcomes reveal conformational modifications in the secondary structure of α-CHT with the permutation of gemini surfactants. The computational calculations (molecular docking and DFT) further corroborate the complex formation between α-CHT and C -E2O-C gemini surfactants and the contribution of electrostatic/hydrophobic interaction forces therein.
不同蛋白质 - 表面活性剂混合物的积累为生物大分子的结构 - 性质相互作用提供了更多认识。它们将有助于设计合适的表面活性剂,进而提高蛋白质 - 表面活性剂复合物在生物技术、化妆品和食品工业领域的利用率。由于其适应性强且显著的特性,我们在此描述了Cₘ - E₂O - Cₘ双子表面活性剂(m = 12、14和16)与α - CHT的相互作用,采用了包括分子对接和密度泛函理论(DFT)方法在内的各种光谱技术。结果揭示了双子表面活性剂与α - CHT相互作用中的复合物形成、去折叠以及静态猝灭机制。通过荧光猝灭法、紫外 - 可见光谱、同步荧光光谱、三维荧光光谱和共振瑞利散射荧光研究来探究斯特恩 - 沃尔默常数(Ksv)、猝灭常数(Kq)、结合位点数量(n)和结合常数(Ka)。数据表明α - CHT - Cₘ - E₂O - Cₘ复合物的形成以及α - CHT中诱导的构象变化。芘荧光说明了芳香族残基对非极性环境的贡献。傅里叶变换红外光谱和圆二色性结果揭示了随着双子表面活性剂的加入,α - CHT二级结构中的构象修饰。计算计算(分子对接和DFT)进一步证实了α - CHT与Cₘ - E₂O - Cₘ双子表面活性剂之间的复合物形成以及其中静电/疏水相互作用力的贡献。