Centre for Structural and Molecular Biochemistry, School of Chemistry, University of East Anglia, Norwich NR4 7TJ, UK.
J Mol Biol. 2011 Dec 9;414(4):511-29. doi: 10.1016/j.jmb.2011.09.038. Epub 2011 Oct 14.
Previous work shows that Im9 folds in a two-state transition while its homologue Im7 folds in a three-state transition via an on-pathway kinetic intermediate state (KIS), with this difference being related to frustration in the structure of Im7. We have used NMR spectroscopy to study conformational dynamics connected to the frustration. A combination of equilibrium peptide N(1)H/N(2)H exchange, model-free analyses of backbone NH relaxation data and relaxation dispersion (RD)-NMR shows that the native state of Im7 is in equilibrium with an intermediate state that is lowly populated [equilibrium intermediate state (EIS)]. Comparison of kinetic and thermodynamic parameters describing the EIS native-state equilibrium obtained by RD-NMR with previously reported parameters describing the KIS native-state equilibrium obtained from stopped-flow fluorescence studies of refolding His-tagged Im7 shows that the KIS and the EIS are the same species. (15)N chemical shifts of the EIS obtained from the RD-NMR analysis show that residues forming helix III in the native state are unstructured in the EIS while other residues experiencing frustration in the native state are in structured regions of the EIS. We show that binding of Im7 and its L53A/I54A variant (which resembles the EIS as shown in previous work) to the cognate partner for Im7, the DNase domain of colicin E7, causes the dynamic processes associated with the frustration to be dampened.
先前的工作表明,Im9 发生两态折叠,而其同源物 Im7 通过路径上的动力学中间态(KIS)发生三态折叠,这种差异与 Im7 结构中的挫折有关。我们已经使用 NMR 光谱研究与挫折有关的构象动力学。结合平衡肽 N(1)H/N(2)H 交换、无模型分析 backbone NH 弛豫数据和弛豫分散(RD)-NMR,表明 Im7 的天然状态与其低丰度的中间态处于平衡状态[平衡中间态(EIS)]。通过 RD-NMR 获得的描述 EIS 天然态平衡的动力学和热力学参数与先前报道的通过 His 标记的 Im7 复性的停流荧光研究获得的 KIS 天然态平衡的参数进行比较,表明 KIS 和 EIS 是相同的物种。从 RD-NMR 分析获得的 EIS 的 (15)N 化学位移表明,在天然状态下形成螺旋 III 的残基在 EIS 中无结构,而在天然状态下经历挫折的其他残基处于 EIS 的结构区域。我们表明,Im7 及其 L53A/I54A 变体(如先前的工作所示,类似于 EIS)与 Im7 的同源伴侣,即 colicin E7 的 DNase 结构域结合,会使与挫折相关的动态过程减弱。