Davis Caitlin M, Cooper A Kat, Dyer R Brian
Department of Chemistry, Emory University , Atlanta, Georgia 30322, United States.
Biochemistry. 2015 Mar 10;54(9):1758-66. doi: 10.1021/acs.biochem.5b00037. Epub 2015 Feb 27.
Comparison of experimental and computational protein folding studies can be difficult because of differences in structural resolution. Isotope-edited infrared spectroscopy offers a direct measure of structural changes involved in protein folding at the single-residue level. Here we demonstrate the increased resolution of site-specific infrared probes to the peptide backbone in the B domain of staphylococcal protein A (BdpA). (13)C═(18)O-labeled methionine was incorporated into each of the helices using recombinant protein expression. Laser-induced temperature jumps coupled with infrared spectroscopy were used to probe changes in the peptide backbone on the submillisecond time scale. The relaxation kinetics of the buried helices, solvated helices, and labeled positions were measured independently by probing the corresponding bands assigned in the amide I region. Using these wavelength-dependent measurements, we observe a fast nanosecond phase and slower microsecond phase at each position. We find at least partial formation of helices 1-3 in the fast intermediate state that precedes the transition state. These measurements provide direct, time-resolved experimental evidence of the early formation of partial helical structure in helices 1 and 3, supporting folding models proposed by computer simulations.
由于结构分辨率的差异,实验性和计算性蛋白质折叠研究的比较可能会很困难。同位素编辑红外光谱法可直接测量单残基水平上蛋白质折叠过程中涉及的结构变化。在这里,我们展示了葡萄球菌蛋白A(BdpA)B结构域中位点特异性红外探针在肽主链上分辨率的提高。使用重组蛋白表达将(13)C═(18)O标记的甲硫氨酸掺入每个螺旋中。激光诱导温度跳跃结合红外光谱用于探测亚毫秒时间尺度上肽主链的变化。通过探测酰胺I区域中分配的相应谱带,独立测量埋藏螺旋、溶剂化螺旋和标记位置的弛豫动力学。利用这些波长相关的测量,我们在每个位置观察到一个快速的纳秒相和较慢的微秒相。我们发现在过渡态之前的快速中间态中,螺旋1-3至少部分形成。这些测量为螺旋1和3中部分螺旋结构的早期形成提供了直接的、时间分辨的实验证据,支持了计算机模拟提出的折叠模型。