Department of Chemistry, Jahangirnagar University, Savar, Dhaka 1342, Bangladesh.
Department of Chemistry, Jashore University of Science and Technology, Jashore 7408, Bangladesh.
Int J Biol Macromol. 2023 Dec 31;253(Pt 4):127101. doi: 10.1016/j.ijbiomac.2023.127101. Epub 2023 Sep 26.
It is important for biological, pharmaceutical, and cosmetic industries to understand how proteins and surfactants interact. Herein, the interaction of bovine serum albumin (BSA) with tetradecyltrimethylammonium bromide (TTAB) in different inorganic salts (KCl, KSO, KPO.HO) has been explored through the conductivity measurement method at different temperatures (300.55 to 325.55 K) with a specific salt concentration and at a fixed temperature (310.55 K) using different salts concentrations. The extent of micelle ionization (α) and different thermodynamic parameters associated with BSA and TTAB mixtures in salt solutions were calculated. Evaluation of the magnitudes of ∆H and ∆S showed that the association was exothermic and primarily an enthalpy-operated process in all cases at lower contents of BSA, but the system became endothermic, and entropy driven in the presence of KPO.HO at a relatively higher concentration of BSA. The enthalpy-entropy compensation variables were determined, which explained the types and nature of interactions between TTAB and BSA in salt media. Molecular docking analysis revealed that the main stabilizing factors in the BSA-TTAB complex are electrostatic and hydrophobic interactions. These findings aligned with the significant results obtained from the conductometry method regarding the nature and characteristics of binding forces observed between BSA and TTAB.
对于生物、制药和化妆品行业来说,了解蛋白质和表面活性剂如何相互作用非常重要。在此,通过电导率测量法在不同温度(300.55 至 325.55 K)下,在特定盐浓度下,并在固定温度(310.55 K)下使用不同盐浓度,研究了牛血清白蛋白(BSA)与十四烷基三甲基溴化铵(TTAB)在不同无机盐(KCl、KSO、KPO.HO)中的相互作用。计算了胶束电离度(α)和与盐溶液中 BSA 和 TTAB 混合物相关的不同热力学参数。评估 ∆H 和 ∆S 的大小表明,在较低的 BSA 含量下,在所有情况下,结合都是放热的,主要是焓驱动的过程,但在存在 KPO.HO 的情况下,在相对较高的 BSA 浓度下,该系统变得吸热,由熵驱动。确定了焓熵补偿变量,这解释了在盐介质中 TTAB 和 BSA 之间相互作用的类型和性质。分子对接分析表明,BSA-TTAB 复合物的主要稳定因素是静电和疏水相互作用。这些发现与电导率法得出的关于 BSA 和 TTAB 之间观察到的结合力的性质和特征的重要结果一致。