Liang Binyong, Arora Ashish, Tamm Lukas K
Center for Membrane Biology and Department of Molecular Physiology and Biological Physics, University of Virginia, P.O. Box 800736, Charlottesville, VA 22908, USA.
Biochim Biophys Acta. 2010 Feb;1798(2):68-76. doi: 10.1016/j.bbamem.2009.07.022. Epub 2009 Aug 6.
In order to better understand the dynamics of an integral membrane protein, backbone amide (15)N NMR dynamics measurements of the beta-barrel membrane protein OmpA have been performed at three magnetic fields. A total of nine relaxation data sets were globally analyzed using an extended model-free formalism. The diffusion tensor was found to be prolate axially symmetric with an axial ratio of 5.75, indicating a possible rotation of the protein within the micelle. The generalized order parameters gradually decreased from the mid-plane towards the two ends of the barrel, counteracting the dynamic gradient of the lipids in a matching bilayer, and were dramatically reduced in the extracellular loops. Large-scale internal motions on the ns time scale indicate that entire loops most likely undergo concerted ("sea anemone"-like) motions emanating from their anchoring points on the barrel. The case of OmpA in DPC micelles also illustrates inherent limitations of analyzing the data with even the most sophisticated current models of the model-free formalism. It is likely that conformational exchange processes on the ms-mus also play a role in describing the motions of some residues, but their analysis did not produce unique results that could be independently verified.
为了更好地理解整合膜蛋白的动力学,已在三个磁场下对β桶状膜蛋白OmpA进行了主链酰胺(15)N NMR动力学测量。使用扩展的无模型形式主义对总共九个弛豫数据集进行了全局分析。发现扩散张量呈轴向伸长的轴对称,轴向比为5.75,表明蛋白质可能在胶束内旋转。广义序参数从桶的中平面向两端逐渐降低,与匹配双层中脂质的动态梯度相反,并且在细胞外环中显著降低。纳秒时间尺度上的大规模内部运动表明,整个环很可能经历从其在桶上的锚定点发出的协同(“海葵”样)运动。DPC胶束中OmpA的情况也说明了即使使用最复杂的当前无模型形式主义模型来分析数据也存在固有的局限性。毫秒至微秒时间尺度上的构象交换过程可能也在描述某些残基的运动中起作用,但其分析并未产生可独立验证的独特结果。