Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
Int J Biol Macromol. 2024 Sep;276(Pt 1):133677. doi: 10.1016/j.ijbiomac.2024.133677. Epub 2024 Jul 9.
Understanding of energetics of interactions between drug and protein is essential in pharmacokinetics and pharmacodynamics study. The binding affinity (K) helps in investigating how tightly or loosely drug is bound to protein. The binding, displacement, conformational change and stability study of drugs- gentamicin (GM), 5-fluorouracil (5FU), oxytetracycline (OTC) and rolitetracycline (RTC) with bovine serum albumin (BSA) has been carried out in presence of each other drug by fluorescence, UV-visible spectroscopy, molecular docking, circular dichroism techniques and thermal denaturation method. The site marker study and docking methods have confirmed that 5FU and GM are able to bind at site 1 and OTC and RTC at site II of BSA. The order of their binding affinities with BSA for the binary system were as GM <5FU < OTC < RTC with the order of 10 < 10 < 10 < 10 M. The displacement study has shown that higher affinity drug decreases the equilibrium constant of another drug already in bound state with BSA if both these drugs are having the same binding site. Therefore 5FU, GM (binding site 1) drugs were not able to displace OTC and RTC (binding site 2) and vice-versa as they are binding at two different sites. The binding constant values were found to be decreasing with increasing temperature for all the systems involved which suggests static or mixed type of quenching, however can only confirmed with the help of TCSPC technique. The ΔG (binding energy) obtained from docking method were in accordance with the ITC method. From molecular docking we have determined the amino acid residues involved in binding process for binary and ternary systems by considering first rank minimum binding energy confirmation. From CD it has been observed that RTC causes most conformational change in secondary and tertiary structure of BSA due to the presence of pyrrole ring. OTC-RTC with higher affinity showed highest melting temperature T values while low affinity drugs in (5FU-GM) combination showed lowest T value. 5FU showed large endothermic denaturation enthalpy ΔH due to the presence of highly electronegative fluorine atom in the pyridine analogue.
理解药物与蛋白质相互作用的能量学在药代动力学和药效学研究中至关重要。结合亲和力(K)有助于研究药物与蛋白质的结合是紧密还是松散。通过荧光、紫外-可见光谱、分子对接、圆二色性技术和热变性方法,研究了氨基糖苷(GM)、5-氟尿嘧啶(5FU)、土霉素(OTC)和罗利替丁(RTC)与牛血清白蛋白(BSA)在相互存在的情况下的结合、置换、构象变化和稳定性。通过位点标记研究和对接方法证实,5FU 和 GM 能够结合到 BSA 的位点 1,而 OTC 和 RTC 则结合到位点 II。二元体系中它们与 BSA 的结合亲和力顺序为 GM <5FU <OTC <RTC,结合常数分别为 10 <10 <10 <10 M。置换研究表明,如果两种药物具有相同的结合位点,则具有更高亲和力的药物会降低已与 BSA 结合的另一种药物的平衡常数。因此,5FU、GM(结合位点 1)药物不能置换 OTC 和 RTC(结合位点 2),反之亦然,因为它们结合在两个不同的位点。对于所有涉及的系统,结合常数值随着温度的升高而降低,这表明存在静态或混合类型的猝灭,但只能借助 TCSPC 技术来确认。从对接方法中获得的ΔG(结合能)与 ITC 方法一致。从分子对接中,我们通过考虑第一顺位最小结合能确认,确定了二元和三元体系中参与结合过程的氨基酸残基。从 CD 可以看出,由于吡咯环的存在,RTC 导致 BSA 的二级和三级结构发生最大构象变化。具有较高亲和力的 OTC-RTC 显示出最高的熔点 T 值,而在(5FU-GM)组合中低亲和力的药物显示出最低的 T 值。由于吡啶类似物中存在高度电负性的氟原子,5FU 表现出较大的热变性焓 ΔH。