Solomentsev Gleb, Diehl Carl, Akke Mikael
Biophysical Chemistry, Center for Molecular Protein Science , Lund University , P.O. Box 124, SE-221 00 Lund , Sweden.
Biochemistry. 2018 Mar 6;57(9):1451-1461. doi: 10.1021/acs.biochem.7b01256. Epub 2018 Feb 14.
FKBP12 (FK506 binding protein 12 kDa) is an important drug target. Nuclear magnetic resonance (NMR) order parameters, describing amplitudes of motion on the pico- to nanosecond time scale, can provide estimates of changes in conformational entropy upon ligand binding. Here we report backbone and methyl-axis order parameters of the apo and FK506-bound forms of FKBP12, based on N and H NMR relaxation. Binding of FK506 to FKBP12 results in localized changes in order parameters, notably for the backbone of residues E54 and I56 and the side chains of I56, I90, and I91, all positioned in the binding site. The order parameters increase slightly upon FK506 binding, indicating an unfavorable entropic contribution to binding of TΔ S = -18 ± 2 kJ/mol at 293 K. Molecular dynamics simulations indicate a change in conformational entropy, associated with all dihedral angles, of TΔ S = -26 ± 9 kJ/mol. Both these values are significant compared to the total entropy of binding determined by isothermal titration calorimetry and referenced to a reactant concentration of 1 mM ( TΔ S = -29 ± 1 kJ/mol). Our results reveal subtle differences in the response to ligand binding compared to that of the previously studied rapamycin-FKBP12 complex, despite the high degree of structural homology between the two complexes and their nearly identical ligand-FKBP12 interactions. These results highlight the delicate dependence of protein dynamics on drug interactions, which goes beyond the view provided by static structures, and reinforce the notion that protein conformational entropy can make important contributions to the free energy of ligand binding.
FKBP12(FK506结合蛋白12千道尔顿)是一个重要的药物靶点。核磁共振(NMR)序参数描述了皮秒到纳秒时间尺度上的运动幅度,可以提供配体结合时构象熵变化的估计值。在此,我们基于氮和氢核磁共振弛豫报告了apo形式以及FK506结合形式的FKBP12的主链和甲基轴序参数。FK506与FKBP12的结合导致序参数发生局部变化,特别是位于结合位点的E54和I56残基的主链以及I56、I90和I91的侧链。FK506结合后序参数略有增加,表明在293K时对结合的熵贡献不利,即TΔS = -18 ± 2 kJ/mol。分子动力学模拟表明,与所有二面角相关的构象熵变化为TΔS = -26 ± 9 kJ/mol。与通过等温滴定量热法测定并参考1 mM反应物浓度的结合总熵(TΔS = -29 ± 1 kJ/mol)相比,这两个值都很显著。我们的结果揭示了与之前研究的雷帕霉素 - FKBP12复合物相比,对配体结合的响应存在细微差异,尽管这两种复合物在结构上具有高度同源性且它们与配体 - FKBP12的相互作用几乎相同。这些结果突出了蛋白质动力学对药物相互作用的微妙依赖性,这超出了静态结构所提供的观点,并强化了蛋白质构象熵可对配体结合自由能做出重要贡献的观念。