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Solution NMR structure of putidaredoxin-cytochrome P450cam complex via a combined residual dipolar coupling-spin labeling approach suggests a role for Trp106 of putidaredoxin in complex formation

机译:通过联合残留偶极偶合-旋转标记方法对Putodaredoxin-cytochrome P450cam复合物的溶液NMR结构表明Putodaredoxin Trp106在复合物形成中的作用

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摘要

The 58 kDa complex formed between the [2Fe-2S] ferredoxin, putidaredoxin (Pdx), and cytochrome P450cam (CYP101) from the bacterium Pseudomonas putida has been investigated by high-resolution solution NMR spectroscopy. Pdx serves as both the physiological reductant and effector for CYP101 in the enzymatic reaction involving conversion of substrate camphor to 5-exo-hydroxy-camphor. In order to obtain an experimental structure for the oxidized Pdx-CYP101 complex, a combined approach using orientational data on the two proteins derived from residual dipolar couplings and distance restraints from site-specific spin labeling of Pdx has been applied. Spectral changes for residues in and near the paramagnetic metal cluster region of Pdx in complex with CYP101 have also been mapped for the first time using 15N and 13C NMR spectroscopy, leading to direct identification of the residues strongly affected by CYP101 binding. The new NMR structure of the Pdx-CYP101 complex agrees well with results from previous mutagenesis and biophysical studies involving residues at the binding interface such as formation of salt bridge between Asp38 of Pdx and Arg112 of CYP101, while at the same time identifying key features different from earlier modeling studies. Analysis of the binding interface of the complex reveals that the side-chain of Trp106, the C-terminal residue of Pdx and critical for binding to CYP101, is located across from the heme-binding loop of CYP101 and forms non-polar contacts with several residues in the vicinity of heme group on CYP101, pointing to a potentially important role in complex formation.
机译:已经通过高分辨率溶液NMR光谱研究了[2Fe-2S]铁氧还蛋白,恶臭氧还蛋白(Pdx)和恶臭假单胞菌的细胞色素P450cam(CYP101)之间形成的58 kDa复合物。在涉及底物樟脑向5-外-羟基樟脑转化的酶促反应中,Pdx既是CYP101的生理还原剂又是效应子。为了获得氧化的Pdx-CYP101络合物的实验结构,已应用一种结合的方法,该方法使用了有关两种蛋白的方向数据,这些蛋白来自残留的偶极偶合,以及来自Pdx的位点自旋标记的距离限制。还首次使用 15 N和 13 C NMR谱图首次绘制了与CYP101络合的Pdx顺磁性金属簇区域中及其附近的残留光谱变化,直接鉴定受CYP101结合强烈影响的残基。 Pdx-CYP101复合物的新NMR结构与先前的诱变和生物物理研究结果非常吻合,该研究涉及结合界面上的残基,例如在Pdx的Asp38和CYP101的Arg112之间形成盐桥,同时确定了关键特征来自较早的建模研究。对复合物结合界面的分析表明,Trp106的侧链,Pdx的C端残基和对CYP101的结合至关重要,位于CYP101的血红素结合环的对面,并与多个CYP101上血红素基团附近的残基,表明在复合物形成中潜在的重要作用。

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