Kukic Predrag, Lundström Patrik, Camilloni Carlo, Evenäs Johan, Akke Mikael, Vendruscolo Michele
Department of Chemistry, University of Cambridge , Cambridge CB2 1EW, U.K.
Department of Physics, Chemistry and Biology, Linköping University , SE-581 83 Linköping, Sweden.
Biochemistry. 2016 Jan 12;55(1):19-28. doi: 10.1021/acs.biochem.5b00961. Epub 2015 Dec 30.
Calmodulin is a two-domain signaling protein that becomes activated upon binding cooperatively two pairs of calcium ions, leading to large-scale conformational changes that expose its binding site. Despite significant advances in understanding the structural biology of calmodulin functions, the mechanistic details of the conformational transition between closed and open states have remained unclear. To investigate this transition, we used a combination of molecular dynamics simulations and nuclear magnetic resonance (NMR) experiments on the Ca(2+)-saturated E140Q C-terminal domain variant. Using chemical shift restraints in replica-averaged metadynamics simulations, we obtained a high-resolution structural ensemble consisting of two conformational states and validated such an ensemble against three independent experimental data sets, namely, interproton nuclear Overhauser enhancements, (15)N order parameters, and chemical shift differences between the exchanging states. Through a detailed analysis of this structural ensemble and of the corresponding statistical weights, we characterized a calcium-mediated conformational transition whereby the coordination of Ca(2+) by just one oxygen of the bidentate ligand E140 triggers a concerted movement of the two EF-hands that exposes the target binding site. This analysis provides atomistic insights into a possible Ca(2+)-mediated activation mechanism of calmodulin that cannot be achieved from static structures alone or from ensemble NMR measurements of the transition between conformations.
钙调蛋白是一种双结构域信号蛋白,在协同结合两对钙离子后被激活,导致大规模构象变化,暴露出其结合位点。尽管在理解钙调蛋白功能的结构生物学方面取得了重大进展,但闭合态和开放态之间构象转变的机制细节仍不清楚。为了研究这种转变,我们对Ca(2+)饱和的E140Q C末端结构域变体进行了分子动力学模拟和核磁共振(NMR)实验相结合的研究。在复制平均元动力学模拟中使用化学位移限制,我们获得了由两种构象状态组成的高分辨率结构系综,并针对三个独立的实验数据集验证了该系综,即质子间核Overhauser增强、(15)N序参数以及交换态之间的化学位移差异。通过对该结构系综及其相应统计权重的详细分析,我们表征了一种钙介导的构象转变,即双齿配体E140的仅一个氧与Ca(2+)配位会触发两个EF手的协同运动,从而暴露出目标结合位点。该分析为钙调蛋白可能的Ca(2+)介导的激活机制提供了原子层面的见解,这是仅从静态结构或从构象之间转变的系综NMR测量中无法实现的。