From the Departments of Chemistry and.
Institut Laue-Langevin, 71 avenue des Martyrs, 38042 Grenoble, France.
J Biol Chem. 2018 Apr 6;293(14):5210-5219. doi: 10.1074/jbc.RA118.001941. Epub 2018 Feb 23.
Electron transfer in all living organisms critically relies on formation of complexes between the proteins involved. The function of these complexes requires specificity of the interaction to allow for selective electron transfer but also a fast turnover of the complex, and they are therefore often transient in nature, making them challenging to study. Here, using small-angle neutron scattering with contrast matching with deuterated protein, we report the solution structure of the electron transfer complex between cytochrome P450 reductase (CPR) and its electron transfer partner cytochrome This is the first reported solution structure of a complex between CPR and an electron transfer partner. The structure shows that the interprotein interface includes residues from both the FMN- and FAD-binding domains of CPR. In addition, the FMN is close to the heme of cytochrome but distant from the FAD, indicating that domain movement is required between the electron transfer steps in the catalytic cycle of CPR. In summary, our results reveal key details of the CPR catalytic mechanism, including interactions of two domains of the reductase with cytochrome and motions of these domains relative to one another. These findings shed light on interprotein electron transfer in this system and illustrate a powerful approach for studying solution structures of protein-protein complexes.
在所有生物体中,电子转移都严重依赖于涉及的蛋白质之间形成复合物。这些复合物的功能需要相互作用的特异性,以允许选择性的电子转移,但也需要快速的复合物转换,因此它们通常在性质上是短暂的,这使得它们难以研究。在这里,我们使用小角中子散射与氘化蛋白的对比匹配,报道了细胞色素 P450 还原酶 (CPR)与其电子转移伙伴细胞色素 c 之间的电子转移复合物的溶液结构。这是首次报道 CPR 与电子转移伙伴之间的复合物的溶液结构。该结构表明,蛋白间界面包括 CPR 的 FMN 和 FAD 结合域的残基。此外,FMN 靠近细胞色素 c 的血红素,但远离 FAD,表明在 CPR 催化循环的电子转移步骤之间需要进行结构域运动。总之,我们的结果揭示了 CPR 催化机制的关键细节,包括还原酶的两个结构域与细胞色素 c 的相互作用以及这些结构域相对于彼此的运动。这些发现揭示了该体系中蛋白质间电子转移的情况,并说明了研究蛋白质-蛋白质复合物溶液结构的一种有力方法。