Beckman Institute, California Institute of Technology, Pasadena, CA 91125, USA.
Proc Natl Acad Sci U S A. 2013 Jan 29;110(5):1606-10. doi: 10.1073/pnas.1221832110. Epub 2013 Jan 14.
We have investigated the folding dynamics of Thermus thermophilus cytochrome c(552) by time-resolved fluorescence energy transfer between the heme and each of seven site-specific fluorescent probes. We have found both an equilibrium unfolding intermediate and a distinct refolding intermediate from kinetics studies. Depending on the protein region monitored, we observed either two-state or three-state denaturation transitions. The unfolding intermediate associated with three-state folding exhibited native contacts in β-sheet and C-terminal helix regions. We probed the formation of a refolding intermediate by time-resolved fluorescence energy transfer between residue 110 and the heme using a continuous flow mixer. The intermediate ensemble, a heterogeneous mixture of compact and extended polypeptides, forms in a millisecond, substantially slower than the ∼100-μs formation of a burst-phase intermediate in cytochrome c. The surprising finding is that, unlike for cytochrome c, there is an observable folding intermediate, but no microsecond burst phase in the folding kinetics of the structurally related thermostable protein.
我们通过色氨酸与七个定点荧光探针之间的时间分辨荧光能量转移,研究了嗜热菌细胞色素 c(552)的折叠动力学。动力学研究发现了一种平衡展开中间态和一种独特的重折叠中间态。根据所监测的蛋白质区域,我们观察到了两种或三种变性转变。与三态折叠相关的展开中间态在β-折叠和 C 末端螺旋区域表现出天然接触。我们使用连续流混合器通过色氨酸残基 110 与色氨酸之间的时间分辨荧光能量转移来探测重折叠中间态的形成。中间态集合体是一种紧凑和伸展多肽的不均匀混合物,在毫秒内形成,明显慢于细胞色素 c 中暴发性中间态的形成速度(约 100μs)。令人惊讶的发现是,与细胞色素 c 不同,在结构相关的热稳定蛋白的折叠动力学中,虽然有可观察到的折叠中间态,但没有微秒的爆发阶段。