Department of Biochemistry, University of Zürich, Winterthurerstrasse 190, 8057 Zürich, Switzerland.
Proteins. 2012 Nov;80(11):2562-72. doi: 10.1002/prot.24137. Epub 2012 Jul 28.
The PDZ domains, a large family of peptide recognition proteins, bind to the C-terminal segment of membrane ion channels and receptors thereby mediating their localization. The peptide binding process is not known in detail and seems to differ among different PDZ domains. For the third PDZ domain of the synaptic protein PSD-95 (PDZ3), a lock-and-key mechanism was postulated on the basis of the almost perfect overlap of the crystal structures in the presence and absence of its peptide ligand. Here, peptide binding to PDZ3 is investigated by explicit solvent molecular dynamics (MD) simulations (for a total of 1.3 μs) and the cut-based free energy profile method for determining free energy barriers and basins. The free energy landscape of apo PDZ3 indicates that there are multiple basins within the native state. These basins differ by the relative orientation of the α2 helix and β2 strand, the two secondary structure elements that make up the peptide binding site. Only the structure with the smallest aperture of the binding site is populated in the MD simulations of the complex whose analysis reveals that the peptide ligand binds to PDZ3 by selecting one of three conformations. Thus, the dynamical information obtained by the atomistic simulations increment the static, that is, partial, picture of the PDZ3 binding mechanism based on the X-ray crystallography data. Importantly, the simulation results show for the first time that conformational selection is a possible mechanism of peptide binding by PDZ domains in general.
PDZ 结构域是一大类肽识别蛋白,与膜离子通道和受体的 C 末端片段结合,从而介导其定位。肽结合过程的细节尚不清楚,而且似乎在不同的 PDZ 结构域之间存在差异。对于突触蛋白 PSD-95(PDZ3)的第三个 PDZ 结构域,基于其晶体结构在存在和不存在肽配体时几乎完全重叠,提出了锁钥机制。在这里,通过显式溶剂分子动力学(MD)模拟(总计 1.3 μs)和用于确定自由能势垒和势阱的基于切割的自由能剖面方法来研究 PDZ3 与肽的结合。apo PDZ3 的自由能景观表明,在天然状态下存在多个势阱。这些势阱的区别在于 α2 螺旋和 β2 链的相对取向,这两个二级结构元件构成了肽结合位点。只有在结合位点的孔径最小的结构在复合物的 MD 模拟中被占据,对其分析表明,肽配体通过选择三种构象之一与 PDZ3 结合。因此,通过原子模拟获得的动力学信息增强了基于 X 射线晶体学数据的 PDZ3 结合机制的静态,即部分,图像。重要的是,模拟结果首次表明,构象选择是 PDZ 结构域结合肽的一种可能机制。