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Conformational Heterogeneity and the Affinity of Substrate Molecular Recognition by Cytochrome P450cam

机译:细胞色素P450cam的构象异质性和底物分子识别的亲和力

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摘要

The broad and variable substrate specificity of cytochrome P450 enzymes makes them a model system for studying the determinants of protein molecular recognition. The archetypal cytochrome P450cam (P450cam) is a relatively specific P450, a feature once attributed to the high rigidity of its active site. However, increasingly studies have provided evidence of the importance of conformational changes to P450cam activity. Here we used infrared (IR) spectroscopy to investigate the molecular recognition of P450cam. Toward this goal, and to assess the influence of a hydrogen bond (H-bond) between active site residue Y96 and substrates, two variants in which Y96 is replaced by a cyanophenyl (Y96CNF) or phenyl (Y96F) group were characterized in complexes with the substrates camphor, isoborneol, and camphane. These combinations allow for a comparison of complexes in which the moieties on both the protein and substrate can serve as a H-bond donor, acceptor, or neither. The IR spectra of heme-bound CO and the site-specifically incorporated CN of Y96CNF were analyzed to characterize the number and nature of environments in each protein, both in the free and bound states. Although the IR spectra do not support the idea that protein–substrate H-bonding is central to P450cam recognition, the data altogether suggest that the differing conformational heterogeneity in the active site of the P450cam variants and changes in heterogeneity upon binding of different substrates likely contribute to their variable affinities via a conformational selection mechanism. This study further extends our understanding of the molecular recognition of archetypal P450cam and demonstrates the application of IR spectroscopy combined with selective protein modification to delineate protein–ligand interactions.
机译:细胞色素P450酶的广泛而多样的底物特异性使其成为研究蛋白质分子识别决定因素的模型系统。原型细胞色素P450cam(P450cam)是一种相对特定的P450,其功能曾经归因于其活性部位的高刚性。但是,越来越多的研究提供了证据,证明构象变化对P450cam活性的重要性。在这里,我们使用红外(IR)光谱来研究P450cam的分子识别。为了实现这一目标,并评估了活性位点残基Y96和底物之间氢键(H键)的影响,在两个变体中将Y96替换为氰基苯基(Y96CNF)或苯基(Y96F)基团,底物樟脑,异冰片和樟脑。这些组合允许对复合物进行比较,其中蛋白质和底物上的部分都可以充当H键供体,受体或两者都不起作用。分析了血红素结合的CO和Y96CNF的位点特异性结合的CN的红外光谱,以表征每种蛋白质在自由和结合状态下环境的数量和性质。尽管红外光谱不支持蛋白质-底物的氢键是P450cam识别的核心思想,但数据完全表明,P450cam变体活性位点的构象异质性不同,不同底物结合后异质性的变化也可能有助于通过构象选择机制改变其亲和力。这项研究进一步扩展了我们对原型P450cam分子识别的理解,并证明了红外光谱结合选择性蛋白修饰来描述蛋白-配体相互作用的应用。

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