Makowski Lee, Rodi Diane J, Mandava Suneeta, Minh David D L, Gore David B, Fischetti Robert F
Biosciences Division, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439-4845, USA.
J Mol Biol. 2008 Jan 11;375(2):529-46. doi: 10.1016/j.jmb.2007.07.075. Epub 2007 Aug 17.
In aqueous solution some proteins undergo large-scale movements of secondary structures, subunits or domains, referred to as protein "breathing", that define a native-state ensemble of structures. These fluctuations are sensitive to the nature and concentration of solutes and other proteins and are thereby expected to be different in the crowded interior of a cell than in dilute solution. Here we use a combination of wide angle X-ray scattering (WAXS) and computational modeling to derive a quantitative measure of the spatial scale of conformational fluctuations in a protein solution. Concentration-dependent changes in the observed scattering intensities are consistent with a model of structural fluctuations in which secondary structures undergo rigid-body motions relative to one another. This motion increases with decreasing protein concentration or increasing temperature. Analysis of a set of five structurally and functionally diverse proteins reveals a diversity of kinetic behaviors. Proteins with multiple disulfide bonds exhibit little or no increase in breathing in dilute solutions. The spatial extent of structural fluctuations appears highly dependent on both protein structure and concentration and is universally suppressed at very high protein concentrations.
在水溶液中,一些蛋白质会发生二级结构、亚基或结构域的大规模运动,即所谓的蛋白质“呼吸”,这定义了一种天然状态的结构集合。这些波动对溶质和其他蛋白质的性质及浓度敏感,因此预计在细胞拥挤的内部环境中与在稀溶液中会有所不同。在这里,我们结合广角X射线散射(WAXS)和计算建模,得出蛋白质溶液中构象波动空间尺度的定量测量值。观察到的散射强度随浓度的变化与一种结构波动模型一致,在该模型中二级结构相对于彼此进行刚体运动。这种运动会随着蛋白质浓度降低或温度升高而增加。对一组五种结构和功能各异的蛋白质的分析揭示了多种动力学行为。具有多个二硫键的蛋白质在稀溶液中呼吸几乎没有增加或根本没有增加。结构波动的空间范围似乎高度依赖于蛋白质结构和浓度,并且在非常高的蛋白质浓度下普遍受到抑制。