首页> 外文期刊>Archives of Biochemistry and Biophysics >Molecular recognition in the P450cam monooxygenase system: Directmonitoring of protein-protein interactions by using optical biosensor
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Molecular recognition in the P450cam monooxygenase system: Directmonitoring of protein-protein interactions by using optical biosensor

机译:P450cam单加氧酶系统中的分子识别:使用光学生物传感器直接监测蛋白质间相互作用

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A real-time optical biosensor study on the interactions between putidaredoxin reductase (PdR), putidaredoxin (Pd), and cytochrome P450cam (P450cam) within the P450cam system was conducted. The binary Pd/P450cam and Pd/PdR complexes were revealed and kinetically characterized. The dominant role of electrostatic interactions in formation of productive electron transfer complexes was demonstrated. It was found that Pd/P450cam complex formation and decay obeys biphasic kinetics in contrast to the monophasic one for complexes formed by other redox partners within the system. Evidence for PdR/P450cam complex formation was obtained. It was found that, in contrast to Pd, which binds only to its redox partners, PdR and P450cam were able to form PdR/PdR and P450cam/P450cam complexes. A ternary PdR/Pd/P450cam complex was also registered. Its lifetime was sufficient to permit up to 60 turnovers to occur. The binding of Pd to P450cam and to PdR within the ternary complex occurred at distinct sites, with Pd serving as a bridge between the two proteins.
机译:实时光学生物传感器研究了在P450cam系统内的Putidaredoxin还原酶(PdR),putidaredoxin(Pd)和细胞色素P450cam(P450cam)之间的相互作用。揭示了二元Pd / P450cam和Pd / PdR复合物并进行了动力学表征。证明了静电相互作用在生产性电子转移复合物的形成中的主要作用。已发现,与系统中其他氧化还原伙伴形成的复合物的单相复合物相比,Pd / P450cam复合物的形成和衰变遵循双相动力学。获得了PdR / P450cam复合物形成的证据。发现与仅结合其氧化还原伙伴的Pd相反,PdR和P450cam能够形成PdR / PdR和P450cam / P450cam复合物。还注册了三元PdR / Pd / P450cam复合物。其寿命足以允许多达60次周转。 Pd与P450cam和三元复合物中的PdR的结合发生在不同的位点,其中Pd充当两种蛋白质之间的桥梁。

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