Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona, USA.
Biophys J. 2011 Nov 16;101(10):2516-24. doi: 10.1016/j.bpj.2011.10.016. Epub 2011 Nov 15.
The significant variation among solved structures of the λ Cro dimer suggests its flexibility. However, contacts in the crystal lattice could have stabilized a conformation which is unrepresentative of its dominant solution form. Here we report on the conformational space of the Cro dimer in solution using replica exchange molecular dynamics in explicit solvent. The simulated ensemble shows remarkable correlation with available x-ray structures. Network analysis and a free energy surface reveal the predominance of closed and semi-open dimers, with a modest barrier separating these two states. The fully open conformation lies higher in free energy, indicating that it requires stabilization by DNA or crystal contacts. Most NMR models are found to be unstable conformations in solution. Intersubunit salt bridging between Arg(4) and Glu(53) during simulation stabilizes closed conformations. Because a semi-open state is among the low-energy conformations sampled in simulation, we propose that Cro-DNA binding may not entail a large conformational change relative to the dominant dimer forms in solution.
λ Cro 二聚体已解决结构之间的显著差异表明其具有灵活性。然而,晶格中的接触可能稳定了一种构象,这种构象不能代表其主要的溶液形式。在这里,我们使用显溶剂中的复制交换分子动力学来报告 Cro 二聚体在溶液中的构象空间。模拟的集合与可用的 X 射线结构具有显著的相关性。网络分析和自由能表面揭示了封闭和半开二聚体的优势,这两种状态之间存在适度的障碍。完全开放的构象位于自由能较高的位置,表明它需要 DNA 或晶体接触的稳定。在溶液中,大多数 NMR 模型被发现是不稳定的构象。模拟过程中 Arg(4)和 Glu(53) 之间的亚基盐桥稳定了封闭构象。由于半开状态是模拟中采样的低能构象之一,我们提出 Cro-DNA 结合相对于溶液中主要的二聚体形式可能不需要大的构象变化。