Vibrational Dynamics of CO Bound to Myoglobin and Metallo-porphyrins

K. Peterson, J. R. Hill, Dana D. Diott, M. Fayer
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Abstract

We have made direct measurements of the vibrational lifetimes of carbonmonoxide (CO) bound at the active site of wildtype myoglobin [1] and myoglobin with single residue mutations in the binding pocket. Measurements were also made for CO bound to water soluble metalloporphyrins with differing metals and peripheral substituents. A pump-probe technique using tunable microjoule pulses from an infrared free-electron laser was used to monitor the loss of vibrational energy from the CO ligand with 2 picosecond time resolution. Recovery to the CO vibrational ground state in both the protein and soluble porphyrin systems occurs in the range from 10 to 30 picoseconds. The vibrational lifetime of CO bound to myoglobin is essentially independent of temperature from 20 to 300 K.
CO与肌红蛋白和金属卟啉结合的振动动力学
我们已经直接测量了野生型肌红蛋白[1]和结合袋中具有单一残基突变的肌红蛋白活性位点结合的一氧化碳(CO)的振动寿命。测量了CO与不同金属和外围取代基的水溶性金属卟啉的结合。利用红外自由电子激光器可调谐微焦耳脉冲的泵浦探测技术,以2皮秒的时间分辨率监测CO配体的振动能量损失。在蛋白质和可溶性卟啉系统中,CO振动基态的恢复发生在10到30皮秒的范围内。CO与肌红蛋白结合的振动寿命基本上与20至300 K的温度无关。
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