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Vibrational population relaxation of carbon monoxide in the heme pocket of photolyzed carbonmonoxy myoglobin: Comparison of time-resolved mid-IR absorbance experiments and molecular dynamics simulations

机译:光解一氧化碳氧肌红蛋白血红素口袋中一氧化碳的振动种群弛豫:时间分辨中红外吸收实验和分子动力学模拟的比较

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摘要

The vibrational energy relaxation of carbon monoxide in the heme pocket of sperm whale myoglobin was studied by using molecular dynamics simulation and normal mode analysis methods. Molecular dynamics trajectories of solvated myoglobin were run at 300 K for both the δ- and ɛ-tautomers of the distal His-64. Vibrational population relaxation times of 335 ± 115 ps for the δ-tautomer and 640 ± 185 ps for the ɛ-tautomer were estimated by using the Landau–Teller model. Normal mode analysis was used to identify those protein residues that act as the primary “doorway” modes in the vibrational relaxation of the oscillator. Although the CO relaxation rates in both the ɛ- and δ-tautomers are similar in magnitude, the simulations predict that the vibrational relaxation of the CO is faster in the δ-tautomer with the distal His playing an important role in the energy relaxation mechanism. Time-resolved mid-IR absorbance measurements were performed on photolyzed carbonmonoxy hemoglobin (Hb13CO). From these measurements, a T1 time of 600 ± 150 ps was determined. The simulation and experimental estimates are compared and discussed.
机译:利用分子动力学模拟和正态分析方法研究了抹香鲸肌红蛋白血红素口袋中一氧化碳的振动能弛豫。溶剂化的肌红蛋白的分子动力学轨迹在His-64远端的δ-和β-互变异构体均以300 K的频率运行。 δ-互变异构体的振动种群弛豫时间为335±115 ps,而γ-互变异构体的振动种群弛豫时间为640±185 ps,这是使用Landau-Teller模型估算的。使用正常模式分析来识别那些在振荡器振动弛豫中充当主要“门道”模式的蛋白质残基。尽管the-互变异构体和δ-互变异构体中的CO弛豫速率在大小上相似,但是模拟预测,δ-互变异构体中CO的振动弛豫更快,His末端在能量弛豫机制中起重要作用。在光解的一氧化碳氧合血红蛋白(Hb 13 CO)上进行时间分辨的中红外吸收率测量。通过这些测量,确定出600±150 ps的T1时间。仿真和实验估计值进行了比较和讨论。

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