Stagg Loren, Zhang Shao-Qing, Cheung Margaret S, Wittung-Stafshede Pernilla
Departments of Biochemistry and Cell Biology and Chemistry, Keck Center for Structural Computational Biology, Rice University, Houston, TX 77251, USA.
Proc Natl Acad Sci U S A. 2007 Nov 27;104(48):18976-81. doi: 10.1073/pnas.0705127104. Epub 2007 Nov 16.
To investigate the consequences of macromolecular crowding on the behavior of a globular protein, we performed a combined experimental and computational study on the 148-residue single-domain alpha/beta protein, Desulfovibrio desulfuricans apoflavodoxin. In vitro thermal unfolding experiments, as well as assessment of native and denatured structures, were probed by using far-UV CD in the presence of various amounts of Ficoll 70, an inert spherical crowding agent. Ficoll 70 has a concentration-dependent effect on the thermal stability of apoflavodoxin (DeltaT(m) of 20 degrees C at 400 mg/ml; pH 7). As judged by CD, addition of Ficoll 70 causes an increase in the amount of secondary structure in the native-state ensemble (pH 7, 20 degrees C) but only minor effects on the denatured state. Theoretical calculations, based on an off-lattice model and hard-sphere particles, are in good agreement with the in vitro data. The simulations demonstrate that, in the presence of 25% volume occupancy of spheres, native flavodoxin is thermally stabilized, and the free energy landscape shifts to favor more compact structures in both native and denatured states. The difference contact map reveals that the native-state compaction originates in stronger interactions between the helices and the central beta-sheet, as well as by less fraying in the terminal helices. This study demonstrates that macromolecular crowding has structural effects on the folded ensemble of polypeptides.
为了研究大分子拥挤对球状蛋白质行为的影响,我们对148个残基的单结构域α/β蛋白质——脱硫脱硫弧菌脱辅基黄素氧还蛋白进行了实验与计算相结合的研究。在存在不同量的Ficoll 70(一种惰性球形拥挤剂)的情况下,通过远紫外圆二色光谱对体外热变性实验以及天然和变性结构进行了探测。Ficoll 70对脱辅基黄素氧还蛋白的热稳定性具有浓度依赖性影响(在400 mg/ml;pH 7时,ΔT(m)为20℃)。通过圆二色光谱判断,添加Ficoll 70会导致天然态集合体(pH 7,20℃)中二级结构量增加,但对变性态只有轻微影响。基于非晶格模型和硬球粒子的理论计算与体外数据高度吻合。模拟结果表明,在球体占据25%体积的情况下,天然黄素氧还蛋白的热稳定性增强,自由能景观发生变化,有利于天然态和变性态形成更紧凑的结构。差异接触图显示,天然态的压缩源于螺旋与中央β折叠之间更强的相互作用,以及末端螺旋的磨损减少。这项研究表明,大分子拥挤对多肽的折叠集合体具有结构影响。