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Structural factors controlling ligand binding to myoglobin: A kinetic hole-burning study

机译:控制配体与肌红蛋白结合的结构因素:动力学烧孔研究

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摘要

Using temperature-derivative spectroscopy in the temperature range below 100 K, we have studied the dependence of the Soret band on the recombination barrier in sperm whale carbonmonoxy myoglobin (MbCO) after photodissociation at 12 K. The spectra were separated into contributions from the photodissociated species, Mb*CO, and CO-bound myoglobin. The line shapes of the Soret bands of both photolyzed and liganded myoglobin were analyzed with a model that takes into account the homogeneous bandwidth, coupling of the electronic transition to vibrational modes, and static conformational heterogeneity. The analysis yields correlations between the activation enthalpy for rebinding and the model parameters that characterize the homogeneous subensembles within the conformationally heterogeneous ensemble. Such couplings between spectral and functional parameters arise when they both originate from a common structural coordinate. This effect is frequently denoted as “kinetic hole burning.” The study of these correlations gives direct insights into the structure–function relationship in proteins. On the basis of earlier work that assigned spectral parameters to geometric properties of the heme, the connections with the heme geometry are discussed. We show that two separate structural coordinates influence the Soret line shape, but only one of the two is coupled to the enthalpy barrier for rebinding. We give evidence that this coordinate, contrary to widespread belief, is not the iron displacement from the mean heme plane.
机译:使用温度导数光谱在低于100 K的温度范围内,我们研究了Soret带对12 K光解离后抹香鲸一氧化碳氧肌红蛋白(MbCO)重组障碍的依赖性。光谱被从光解离物种中分离出来,Mb * CO和与CO结合的肌红蛋白。利用考虑了均一带宽,电子跃迁与振动模式的耦合以及静态构象异质性的模型分析了光解的和配体的肌红蛋白的Soret带的线形。该分析在重新绑定的激活焓与表征构象异质集成体中的同质子组件的模型参数之间产生了相关性。当光谱和功能参数都源自共同的结构坐标时,就会出现这种耦合。这种效应通常被称为“动洞燃烧”。对这些相关性的研究可以直接了解蛋白质的结构-功能关系。在将光谱参数分配给血红素几何特性的早期工作的基础上,讨论了与血红素几何形状的联系。我们显示了两个单独的结构坐标会影响Soret线的形状,但是两个中只有一个耦合到焓垒以进行重新绑定。我们给出的证据表明,与普遍的看法相反,该坐标不是铁从平均血红素平面的位移。

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