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Direct observation of ligand transfer and bond formation in cytochrome c oxidase by using mid-infrared chirped-pulse upconversion

机译:通过使用中红外chi脉冲上变频直接观察细胞色素c氧化酶中的配体转移和键形成

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摘要

We have implemented the recently demonstrated technique of chirped-pulse upconversion of midinfrared femtosecond pulses into the visible in a visible pump–midinfrared probe experiment for high-resolution, high-sensitivity measurements over a broad spectral range. We have succeeded in time-resolving the CO ligand transfer process from the heme Fe to the neighboring CuB atom in the bimetallic active site of mammalian cytochrome c oxidase, which was known to proceed in <1 ps, using the full CO vibrational signature of Fe–CO bond breaking and CuB–CO bond formation. Our differential transmission results show a delayed onset of the appearance of the CuB-bound species (200 fs), followed by a 450-fs exponential rise. Trajectories calculated by using molecular-dynamics simulations with a Morse potential for the CuB–C interaction display a similar behavior. Both experimental and calculated data strongly suggest a ballistic contribution to the transfer process.
机译:我们已经在可见光泵-中红外探头实验中实施了最近演示的将中红外飞秒脉冲的chi脉冲上转换为可见光的技术,以便在较宽的光谱范围内进行高分辨率,高灵敏度的测量。我们成功地在时间上解决了从血红素Fe到哺乳动物细胞色素C氧化酶双金属活性位点中相邻CuB原子的CO配体转移过程,已知该过程以<1 ps进行,使用了Fe的完整CO振动特征–CO键断裂和CuB–CO键形成。我们的差分传输结果表明,与CuB结合的物种的出现延迟了(200 fs)的出现,随后呈450 fs的指数上升。通过使用分子动力学模拟计算出的轨迹具有莫斯电势的CuB–C相互作用,显示出相似的行为。实验数据和计算数据都强烈暗示了弹道对转移过程的贡献。

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