Zimmermann Jörg, Gundogdu Kenan, Cremeens Matthew E, Bandaria Jigar N, Hwang Gil Tae, Thielges Megan C, Cheatum Christopher M, Romesberg Floyd E
J Phys Chem B. 2009 Jun 11;113(23):7991-4. doi: 10.1021/jp900516c.
The spectral position of C-D stretching absorptions in the so-called "transparent window" of protein absorption (1800-2300 cm(-1)) makes them well suited as probes of protein dynamics with high temporal and structural resolution. We have previously incorporated single deuterated amino acids into proteins to site-selectively follow protein folding and ligand binding by steady-state FT IR spectroscopy. Ultimately, our goal is to use C-D bonds as probes in time-resolved IR spectroscopy to study dynamics and intramolecular vibrational energy redistribution (IVR) in proteins. As a step toward this goal, we now present the first time-resolved experiments characterizing the population and dephasing dynamics of selectively excited C-D bonds in a deuterated amino acid. Three differently deuterated, Boc-protected leucines were selected to systematically alter the number of additional C-D bonds that may mediate IVR out of the initially populated bright C-D stretching mode. Three-pulse photon echo experiments show that the steady-state C-D absorption linewidths are broadened by both homogeneous and inhomogeneous effects, and transient grating experiments reveal that IVR occurs on a subpicosecond time scale and is nonstatistical. The results have important implications for the interpretation of steady-state C-D spectra and demonstrate the potential utility of C-D bonds as probes of dynamics and IVR within a protein.
在蛋白质吸收的所谓“透明窗口”(1800 - 2300 cm⁻¹)中,C - D伸缩吸收的光谱位置使其非常适合作为具有高时间和结构分辨率的蛋白质动力学探针。我们之前已将单个氘代氨基酸掺入蛋白质中,通过稳态傅里叶变换红外光谱对蛋白质折叠和配体结合进行位点选择性跟踪。最终,我们的目标是在时间分辨红外光谱中使用C - D键作为探针,以研究蛋白质中的动力学和分子内振动能量再分布(IVR)。作为朝着这个目标迈出的一步,我们现在展示首次时间分辨实验,该实验表征了氘代氨基酸中选择性激发的C - D键的布居和退相动力学。选择了三种不同氘代的、Boc保护的亮氨酸,以系统地改变可能介导IVR离开初始布居的明亮C - D伸缩模式的额外C - D键的数量。三脉冲光子回波实验表明,稳态C - D吸收线宽因均匀和非均匀效应而变宽,瞬态光栅实验表明IVR发生在亚皮秒时间尺度上且是非统计性的。这些结果对稳态C - D光谱的解释具有重要意义,并证明了C - D键作为蛋白质内动力学和IVR探针的潜在用途。