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Strong Ligand-Protein Interactions Revealed by Ultrafast Infrared Spectroscopy of CO in the Heme Pocket of the Oxygen Sensor FixL

机译:氧传感器FixL血红素袋中CO的超快红外光谱显示了强大的配体-蛋白质相互作用。

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In heme-based sensor proteins, ligand binding to heme in a sensor domain induces conformational changes that eventually lead to changes in enzymatic activity of an associated catalytic domain. The bacterial oxygen sensor FixL is the best-studied example of these proteins and displays marked differences in dynamic behavior with respect to model globin proteins. We report a mid-IR study of the configuration and ultrafast dynamics of CO in the distal heme pocket site of the sensor PAS domain FixLH, employing a recently developed method that provides a unique combination of high spectral resolution and range and high sensitivity. Anisotropy measurements indicate that CO rotates toward the heme plane upon dissociation, as is the case in globins. Remarkably, CO bound to the heme iron is tilted by ~30° with respect to the heme normal, which contrasts to the situation in myoglobin and in present FixLH-CO X-ray crystal structure models. This implies protein-environment-induced strain on the ligand, which is possibly at the origin of a very rapid docking-site population in a single conformation. Our observations likely explain the unusually low affinity of FixL for CO that is at the origin of the weak ligand discrimination between CO and O_2. Moreover, we observe orders of magnitude faster vibrational relaxation of dissociated CO in FixL than in globins, implying strong interactions of the ligand with the distal heme pocket environment. Finally, in the R220H FixLH mutant protein, where CO is H-bonded to a distal histidine, we demonstrate that the H-bond is maintained during photolysis. Comparison with extensively studied globin proteins unveils a surprisingly rich variety in both structural and dynamic properties of the interaction of a diatomic ligand with the ubiquitous b-type heme-proximal histidine system in different distal pockets.
机译:在基于血红素的传感器蛋白中,配体与传感器域中的血红素结合会诱导构象变化,最终导致相关催化域的酶活性发生变化。细菌氧传感器FixL是这些蛋白质的最佳研究实例,相对于模型球蛋白蛋白质,其动态行为显示出明显差异。我们使用最新开发的方法提供了高光谱分辨率,范围和高灵敏度的独特结合,对传感器PAS域FixLH的远端血红素袋位中CO的构型和超快动力学进行了中红外研究。各向异性测量表明,在解离时,CO朝向血红素平面旋转,就像球蛋白一样。值得注意的是,与血红素铁结合的CO相对于血红素法线倾斜了约30°,这与肌红蛋白和当前FixLH-CO X射线晶体结构模型中的情况形成了对比。这意味着配体上的蛋白质环境诱导的菌株,可能是单一构象中非常快速的对接位点种群的起源。我们的观察结果可能解释了FixL对CO的异常低的亲和力,这是CO和O_2之间弱的配体区别的起源。此外,我们观察到FixL中解离的CO的振动弛豫速度比球蛋白快几个数量级,这意味着配体与远端血红素囊袋环境之间的强烈相互作用。最后,在R220H FixLH突变蛋白中,其中CO与远端组氨酸H键合,我们证明了H键在光解过程中得以维持。与广泛研究的珠蛋白的比较揭示了在不同的远端口袋中,双原子配体与普遍存在的b型血红素近端组氨酸系统相互作用的结构和动力学特性方面出乎意料的丰富。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第43期|p.17110-17113|共4页
  • 作者单位

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France,Institut fuer Physikalische und Theoretische Chemie, Universitaet Wuerzburg, Am Hubland, 97074 Wuerzburg, Germany;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

    Laboratoire d'Optique et Biosciences, Ecole Polytechnique, CNRS, 91128 Palaiseau, France,INSERM U696, 91128 Palaiseau, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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