Department of Physics and Astronomy, Michigan State University, East Lansing, Michigan 48824, USA.
J Phys Chem B. 2009 Dec 17;113(50):16209-13. doi: 10.1021/jp904189b.
We have measured the intramolecular diffusion rate between distant residues in the aggregation-prone protein HypF-N under various denaturing conditions. Using the method of cysteine quenching of the tryptophan triplet state, we find that intramolecular diffusion remains roughly constant at high concentrations of denaturant (2-6 M GdnHCl) and slows down at low concentrations of denaturant, but the decrease is not uniform throughout the chain. Extrapolation of these measurements to 0 M GdnHCl gives D approximately 10(-7) cm(2) s(-1), about 1 order of magnitude lower than unstructured peptides and at least 2 orders of magnitude higher than well-behaved proteins. This suggests that there is a dynamic range of conformational reorganization within which partially unfolded states are prone to aggregation.
我们已经测量了在不同变性条件下,易于聚集的蛋白质 HypF-N 中远距离残基之间的分子内扩散速率。使用色氨酸三重态的半胱氨酸猝灭方法,我们发现分子内扩散在高浓度变性剂(2-6 M GdnHCl)下基本保持不变,而在低浓度变性剂下减慢,但这种下降并非整个链均匀的。将这些测量值外推到 0 M GdnHCl 给出 D 约为 10(-7) cm(2) s(-1),比无规卷曲的肽低大约一个数量级,比表现良好的蛋白质至少高两个数量级。这表明存在一个构象重排的动态范围,其中部分展开状态容易聚集。