Solid State and Structural Chemistry Unit, Indian Institute of Science , Bangalore, Karnataka 560012, India.
J Am Chem Soc. 2016 Mar 2;138(8):2609-16. doi: 10.1021/jacs.5b11300. Epub 2016 Feb 16.
A fundamental question in protein folding is whether the coil to globule collapse transition occurs during the initial stages of folding (burst phase) or simultaneously with the protein folding transition. Single molecule fluorescence resonance energy transfer (FRET) and small-angle X-ray scattering (SAXS) experiments disagree on whether Protein L collapse transition occurs during the burst phase of folding. We study Protein L folding using a coarse-grained model and molecular dynamics simulations. The collapse transition in Protein L is found to be concomitant with the folding transition. In the burst phase of folding, we find that FRET experiments overestimate radius of gyration, Rg, of the protein due to the application of Gaussian polymer chain end-to-end distribution to extract Rg from the FRET efficiency. FRET experiments estimate ≈6 Å decrease in Rg when the actual decrease is ≈3 Å on guanidinium chloride denaturant dilution from 7.5 to 1 M, thereby suggesting pronounced compaction in the protein dimensions in the burst phase. The ≈3 Å decrease is close to the statistical uncertainties of the Rg data measured from SAXS experiments, which suggest no compaction, leading to a disagreement with the FRET experiments. The transition-state ensemble (TSE) structures in Protein L folding are globular and extensive in agreement with the Ψ-analysis experiments. The results support the hypothesis that the TSE of single domain proteins depends on protein topology and is not stabilized by local interactions alone.
蛋白质折叠中的一个基本问题是,卷曲到球团的坍塌转变是在折叠的初始阶段(爆发阶段)发生,还是与蛋白质折叠转变同时发生。单分子荧光共振能量转移(FRET)和小角 X 射线散射(SAXS)实验在蛋白 L 折叠过程中是否发生崩溃转变存在分歧。我们使用粗粒度模型和分子动力学模拟研究蛋白 L 的折叠。发现在蛋白 L 折叠过程中,崩溃转变与折叠转变同时发生。在折叠的爆发阶段,我们发现 FRET 实验高估了蛋白的回转半径(Rg),因为应用高斯聚合物链末端到末端分布从 FRET 效率中提取 Rg。FRET 实验估计在胍盐酸盐变性剂从 7.5 到 1 M 的稀释过程中 Rg 减少约 6 Å,而实际上减少约 3 Å,从而表明在爆发阶段蛋白尺寸明显紧凑。约 3 Å 的减少接近于从 SAXS 实验测量的 Rg 数据的统计不确定度,这表明没有紧凑化,从而与 FRET 实验不一致。蛋白 L 折叠中的过渡态集合(TSE)结构是球形的,并且与 Ψ 分析实验一致。结果支持这样的假设,即单域蛋白的 TSE 取决于蛋白质拓扑结构,而不仅仅由局部相互作用稳定。