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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Excited state charge-transfer dynamics study of poplar plastocyanin by ultrafast pump-probe spectroscopy and molecular dynamics simulation
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Excited state charge-transfer dynamics study of poplar plastocyanin by ultrafast pump-probe spectroscopy and molecular dynamics simulation

机译:杨树质体蓝蛋白激发态电荷转移动力学的超快泵浦光谱研究及分子动力学模拟

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摘要

We have applied ultrafast pump-probe spectroscopy to investigate the excited state dynamics of the blue copper protein poplar plastocyanin, by exciting in the blue side of its 600-nm absorption band. The decay of the charge-transfer excited state occurs exponentially with a time constant of approximately 280 fs and is modulated by well visible oscillations. The Fourier transform of the oscillatory component, besides providing most of the vibrational modes found by conventional resonance Raman, presents additional bands in the low frequency region modes, which are reminiscent of collective motions of biological relevance. Notably, a high frequency mode at approximately 508 cm(-1), whose dynamics are consistent with that of the excited state and already observed for other blue copper proteins, is shown to be present also in poplar plastocyanin. This vibrational mode is reproduced by a molecular dynamics simulation involving the excited state of the copper site. (C) 2003 Elsevier B.V. All rights reserved. [References: 34]
机译:我们已经应用超快泵浦光谱技术,通过在其600 nm吸收带的蓝色侧进行激发,研究了蓝色铜蛋白杨树质体蓝蛋白的激发态动力学。电荷转移激发态的衰减以大约280 fs的时间常数指数发生,并通过可见的振荡进行调制。振荡分量的傅立叶变换除了提供常规共振拉曼所能找到的大多数振动模式外,还在低频区域模式中提供了额外的频带,这使人联想到生物学相关的集体运动。值得注意的是,杨树质体蓝素中也存在一种高频模式,其频率约为508 cm(-1),其动力学与激发态的动力学一致,并且已经观察到其他蓝铜蛋白。通过涉及铜位点激发态的分子动力学模拟再现了该振动模式。 (C)2003 Elsevier B.V.保留所有权利。 [参考:34]

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