Basheeruddin Mohd, Khan Sheeza, Ahmed Neesar, Jamal Shazia
School of Life Sciences, B. S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, India.
Front Mol Biosci. 2022 Jul 11;9:872905. doi: 10.3389/fmolb.2022.872905. eCollection 2022.
As a nonsteroidal antiinflammatory drug, diclofenac (DCF) is used in the treatment of a variety of human ailments. It has already been reported that the use of this class of drugs for a longer duration is associated with numerous side effects such as cardiovascular implications, reno-medullary complications, etc. In the present study, the effect of DCF on the structure, stability, and function of lysozyme was studied. The study was designed to examine the effect of DCF only at various pH values. Heat-induced denaturation of lysozyme was analyzed in the presence and absence of various molar concentrations of DCF at different pH values. The values of thermodynamic parameters, the midpoint of denaturation ( ), enthalpy change at (Δ ), constant pressure heat capacity change (Δ ), and Gibbs energy change at 25°C (Δ ), thus obtained under a given set of conditions (pH and molar concentration of DCF), demonstrated the following 1) DCF destabilized lysozyme with respect of and Δ at all the pH values, 2) the magnitude of protein destabilization is lesser at acidic pH than at physiological pH, 3) structural changes in lysozyme are less projecting at pH 2.0 than at pH 7.0, and 4) quenching is observed at both pH values. Furthermore, the process of protein destabilization in the presence of DCF is entropically driven.
作为一种非甾体类抗炎药,双氯芬酸(DCF)用于治疗多种人类疾病。已有报道称,长期使用这类药物会引发诸多副作用,如心血管问题、肾髓质并发症等。在本研究中,研究了双氯芬酸对溶菌酶结构、稳定性和功能的影响。该研究旨在仅考察不同pH值下双氯芬酸的作用效果。在不同pH值下,于有和没有不同摩尔浓度双氯芬酸存在的情况下,分析了热诱导的溶菌酶变性。在给定的一组条件(pH值和双氯芬酸的摩尔浓度)下获得的热力学参数值,即变性中点( )、 时的焓变(Δ )、恒压热容变化(Δ )以及25°C时的吉布斯自由能变化(Δ ),表明:1)在所有pH值下,双氯芬酸都会使溶菌酶在 和Δ 方面变得不稳定;2)在酸性pH值下蛋白质不稳定的程度低于生理pH值下的程度;3)溶菌酶在pH 2.0时的结构变化比在pH 7.0时的变化小;4)在两个pH值下均观察到淬灭现象。此外,在双氯芬酸存在下蛋白质不稳定的过程是由熵驱动的。