Department of Biochemistry and Molecular Biology, Institute for Biophysical Dynamics, The University of Chicago, 929 East 57th Street, Chicago, Illinois 60637, USA.
J Am Chem Soc. 2012 Oct 3;134(39):16360-9. doi: 10.1021/ja3069038. Epub 2012 Sep 18.
Distance determination from an echo intensity modulation obtained by pulsed double electron-electron resonance (DEER) experiment is a mathematically ill-posed problem. Tikhonov regularization yields distance distributions that can be difficult to interpret, especially in a system with multiple discrete distance distributions. Here, we show that by using geometric fit constraints in symmetric homo-oligomeric protein systems, we were able to increase the accuracy of a model-based fit solution based on a sum of Rice distributions. Our approach was validated on two different ion channels of known oligomeric states, KcsA (tetramer) and CorA (pentamer). Statistical analysis of the resulting fits was integrated within our method to help the experimenter evaluate the significance of a symmetry-constrained vs standard model distribution fit and to examine multidistance confidence regions. This approach was used to quantitatively evaluate the role of the C-terminal domain (CTD) on the flexibility and conformation of the activation gate of the K(+) channel KcsA. Our analysis reveals a significant increase in the dynamics of the inner bundle gate upon opening. Also, it explicitly demonstrates the degree to which the CTD restricts the motion of the lower gate at rest and during activation gating.
从脉冲双电子-电子共振(DEER)实验获得的回波强度调制中确定距离是一个数学不适定问题。Tikhonov 正则化产生的距离分布可能难以解释,特别是在具有多个离散距离分布的系统中。在这里,我们表明,通过在对称同型寡聚蛋白系统中使用几何拟合约束,我们能够提高基于 Rice 分布和的模型拟合解决方案的准确性。我们的方法在两个具有已知寡聚状态的不同离子通道(KcsA(四聚体)和 CorA(五聚体))上进行了验证。在我们的方法中集成了对拟合结果的统计分析,以帮助实验者评估对称约束与标准模型分布拟合的显著性,并检查多距离置信区域。该方法用于定量评估 C 端结构域(CTD)对 K(+)通道 KcsA 激活门灵活性和构象的作用。我们的分析表明,在打开时,内部束门的动力学显著增加。此外,它还明确地表明了 CTD 在静止和激活门控期间限制下门运动的程度。