a Faculty of Life Sciences, Department of Biochemistry , Aligarh Muslim University , Aligarh , 202002 , India.
J Biomol Struct Dyn. 2018 May;36(6):1479-1489. doi: 10.1080/07391102.2017.1326320. Epub 2017 May 18.
The binding interaction between temsirolimus, an important antirenal cancer drug, and HSA, an important carrier protein was scrutinized making use of UV and fluorescence spectroscopy. Hyper chromaticity observed in UV spectroscopy in the presence of temsirolimus as compared to free HSA suggests the formation of complex between HSA and temsirolimus. Fluorescence quenching experiments clearly showed quenching in the fluorescence of HSA in the presence of temsirolimus confirming the complex formation and also confirmed that static mode of interaction is operative for this binding process. Binding constant values obtained through UV and fluorescence spectroscopy reveal strong interaction; temsirolimus binds to HSA at 298 K with a binding constant of 2.9 × 10 Mimplying the strength of interaction. The negative Gibbs free energy obtained through Isothermal titration calorimetry as well as quenching experiments suggests that binding process is spontaneous. Molecular docking further provides an insight of various residues that are involved in this binding process; showing the binding energy to be -12.9 kcal/mol. CD spectroscopy was retorted to analyze changes in secondary structure of HSA; increased intensity in presence of temsirolimus showing changes in secondary structure of HSA induced by temsirolimus. This study is of importance as it provides an insight into the binding mechanism of an important antirenal cancer drug with an important carrier protein. Once temsirolimus binds to HSA, it changes conformation of HSA which in turn can alter the functionality of this important carrier protein and this altered functionality of HSA can be highlighted in variety of diseases.
利用紫外光谱法和荧光光谱法研究了雷帕霉素(一种重要的肾癌治疗药物)与 HSA(一种重要的载体蛋白)之间的结合相互作用。与游离 HSA 相比,雷帕霉素存在时紫外光谱中观察到的增色现象表明 HSA 与雷帕霉素之间形成了复合物。荧光猝灭实验清楚地表明,在雷帕霉素存在下 HSA 的荧光发生猝灭,证实了复合物的形成,并证实该结合过程以静态模式相互作用。通过紫外和荧光光谱法获得的结合常数值表明存在强相互作用;雷帕霉素在 298 K 时与 HSA 结合,结合常数为 2.9×10 Mimplying,表明相互作用强度。等温滴定量热法和猝灭实验获得的负吉布斯自由能表明结合过程是自发的。分子对接进一步提供了参与该结合过程的各种残基的见解;显示结合能为-12.9 kcal/mol。圆二色性(CD)光谱用于分析 HSA 二级结构的变化;在存在雷帕霉素的情况下,强度增加表明雷帕霉素诱导 HSA 二级结构发生变化。这项研究很重要,因为它深入了解了一种重要的肾癌治疗药物与一种重要的载体蛋白的结合机制。一旦雷帕霉素与 HSA 结合,就会改变 HSA 的构象,从而改变这种重要载体蛋白的功能,并且 HSA 的这种改变的功能可以在各种疾病中得到强调。