Fang Chong, Bauman Joseph D, Das Kalyan, Remorino Amanda, Arnold Eddy, Hochstrasser Robin M
Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.
Proc Natl Acad Sci U S A. 2008 Feb 5;105(5):1472-7. doi: 10.1073/pnas.0709320104. Epub 2007 Nov 26.
The two nitrile groups at the wings of the nonnucleoside HIV-1 reverse transcriptase (RT) inhibitor TMC278 are both identified in high-sensitivity 2D IR spectroscopy experiments of the HIV-1 RT/TMC278 complex. The vibrational spectra indicate that the two arms of the inhibitor sense quite different environments within the hydrophobic pocket. The vibrational relaxation of the two arms are almost equal at 3 ps from model studies. The 2D IR spectra expose a significant distribution of nitrile frequencies that diffuse at equilibrium on ultrafast time scales ranging from hundreds of femtoseconds to tens of picoseconds. The slow spectral diffusion of the cyanovinyl arm of the inhibitor is attributed to its interaction with the backbone and side chains in the hydrophobic tunnel. The results show that the inhibitor cyano modes lose memory of their structural configurations relative to the hydrophobic pocket within tens of picoseconds. The cross-peaks between the two arms of the drug are tentatively attributed to relaxation of the nitrile state with both arms excited.
在HIV-1逆转录酶(RT)/TMC278复合物的高灵敏度二维红外光谱实验中,非核苷HIV-1逆转录酶抑制剂TMC278两翼的两个腈基均被识别。振动光谱表明,抑制剂的两条臂在疏水口袋内感知到截然不同的环境。模型研究显示,两条臂的振动弛豫在3皮秒时几乎相等。二维红外光谱揭示了腈基频率的显著分布,这些频率在从数百飞秒到数十皮秒的超快时间尺度上达到平衡扩散。抑制剂氰基乙烯基臂的缓慢光谱扩散归因于其与疏水通道中主链和侧链的相互作用。结果表明,抑制剂的氰基模式在几十皮秒内就失去了相对于疏水口袋的结构构型记忆。药物两条臂之间的交叉峰初步归因于双臂激发时腈基态的弛豫。