Di Pace A, Cupane A, Leone M, Vitrano E, Cordone L
Istituto di Fisica dell'Università, Palermo, Italy.
Biophys J. 1992 Aug;63(2):475-84. doi: 10.1016/S0006-3495(92)81606-5.
In this work we study the temperature dependence of the Soret band lineshape of the carbonmonoxy derivatives of sperm whale myoglobin, human hemoglobin, and its isolated alpha and beta subunits. To fit the observed spectral profile we use an analytic expression derived for a system whereby a single electronic transition is coupled to Franck-Condon active vibrational modes, within the adiabatic and harmonic approximation. The vibronic structure of the spectra arises from the coupling with high frequency modes; these modes contribute to the total line shape through a series of Lorentzians with peak positions at vibrational overtones and half width related to the time constant of the population decay of the excited electronic state (homogeneous broadening); moreover, the coupling with low frequency modes broadens each Lorentzian to a Voigtian. Inhomogeneous broadening is modeled as a gaussian distribution of the 0-0 transition frequencies and is therefore added as a constant term to the previous gaussian width. This spectral deconvolution enables us to investigate the different contributions to line broadening and the parameters that characterize the vibrational coupling, as well as their dependence upon protein and solvent composition. The investigation is carried out as a function of temperature in the range 20-300 K; relevant information is obtained by comparing experimental results with theoretical predictions. This work supports a description of the investigated proteins as heterogeneous systems, whose heterogeneity depends on the particular protein and on the composition of the external matrix. The delocalized pi electron cloud of the porphyrin ring is coupled not only to the high frequency vibrational modes of the active site but also to a "bath" of lower frequency modes that involve the entire protein; moreover at suitable temperatures (approximately 200 K), anharmonic motions, which are an obvious prerequisite for the jumping among different conformational substates, become evident.
在这项工作中,我们研究了抹香鲸肌红蛋白、人血红蛋白及其分离的α和β亚基的一氧化碳衍生物的索雷特带线形的温度依赖性。为了拟合观察到的光谱轮廓,我们使用了一个为这样一个系统推导的解析表达式,即在绝热和谐波近似下,单个电子跃迁与弗兰克 - 康登活性振动模式耦合。光谱的振转结构源于与高频模式的耦合;这些模式通过一系列洛伦兹曲线对总线形有贡献,这些洛伦兹曲线的峰值位置在振动泛音处,半高宽与激发电子态的布居衰减时间常数(均匀展宽)有关;此外,与低频模式的耦合将每个洛伦兹曲线展宽为一个沃伊特曲线。非均匀展宽被建模为0 - 0跃迁频率的高斯分布,因此作为一个常数项加到先前的高斯宽度上。这种光谱去卷积使我们能够研究对线展宽的不同贡献以及表征振动耦合的参数,以及它们对蛋白质和溶剂组成的依赖性。研究是在20 - 300 K的温度范围内进行的;通过将实验结果与理论预测进行比较获得相关信息。这项工作支持将所研究的蛋白质描述为异质系统,其异质性取决于特定的蛋白质和外部基质的组成。卟啉环的离域π电子云不仅与活性位点的高频振动模式耦合,还与涉及整个蛋白质的低频模式的“浴”耦合;此外,在合适的温度(约200 K)下,非谐运动变得明显,而非谐运动是不同构象亚态之间跳跃的一个明显前提条件。