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Temperature dependence of the low frequency dynamics of myoglobin. Measurement of the vibrational frequency distribution by inelastic neutron scattering.

机译:肌红蛋白低频动力学的温度依赖性。通过非弹性中子散射测量振动频率分布。

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摘要

Inelastic neutron scattering spectra of myoglobin hydrated to 0.33 g water (D2O)/g protein have been measured in the low frequency range (1-150 cm-1) at various temperatures between 100 and 350 K. The spectra at low temperatures show a well-resolved maximum in the incoherent dynamic structure factor Sinc(q, omega) at approximately 25 cm-1 and no elastic broadening. This maximum becomes gradually less distinct above 180 K due to the increasing amplitude of quasielastic scattering which extends out to 30 cm-1. The vibrational frequency distribution derived independently at 100 and 180 K are very similar, suggesting harmonic behavior at these temperatures. This result has been used to separate the vibrational motion from the quasielastic motion at temperatures above 180 K. The form of the density of states of myoglobin is discussed in relation to that of other amorphous systems, to theoretical calculations of low frequency modes in proteins, and to previous observations by electron-spin relaxation of fractal-like spectral properties of proteins. The onset of quasielastic scattering above 180 K is indicative of a dynamic transition of the system and correlates with an anomalous increase in the atomic mean-squared displacements observed by Mössbauer spectroscopy (Parak, F., E. W. Knapp, and D. Kucheida. 1982. J. Mol. Biol. 161: 177-194.) and inelastic neutron scattering (Doster, W., S. Cusack, and W. Petry, 1989. Nature [Lond.]. 337: 754-756.) Similar behavior is observed for a hydrated powder of lysozyme suggesting that the low frequency dynamics of globular proteins have common features.
机译:在100至350 K的不同温度下,在低频范围(1-150 cm-1)中测量了水合为0.33 g水(D2O)/ g蛋白质的肌红蛋白的非弹性中子散射光谱。 -在大约25 cm-1处解析出非相干动态结构因子Sinc(q,Ω)的最大值,并且没有弹性展宽。由于延伸到30 cm-1的准弹性散射的振幅增加,在180 K以上,该最大值逐渐变得不那么明显。独立于100和180 K导出的振动频率分布非常相似,表明在这些温度下的谐波行为。在高于180 K的温度下,该结果已用于将振动运动与准弹性运动区分开。讨论了肌红蛋白状态密度的形式(与其他无定形系统的形式有关),以及蛋白质低频模式的理论计算,以及通过电子自旋弛豫蛋白质的分形样光谱特性的先前观察。超过180 K的准弹性散射的开始表明该系统发生了动态转变,并且与Mössbauer光谱学观察到的原子均方位移的反常增加相关(Parak,F.,EW Knapp,and D.Kuchedida.1982。 J. Mol。Biol。161:177-194。)和非弹性中子散射(Doster,W.,S. Cusack和W. Petry,1989. Nature [Lond。]。337:754-756。)。观察到溶菌酶的水合粉末,表明球状蛋白的低频动力学具有共同特征。

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