Department of Biochemistry, University of California, Riverside, Riverside, CA, 92521, USA.
Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.
Arch Biochem Biophys. 2021 Apr 15;701:108793. doi: 10.1016/j.abb.2021.108793. Epub 2021 Feb 12.
We have undertaken a spectral deconvolution of the three FADs of EtfAB/bcd to the spectral changes seen in the course of reduction, including the spectrally distinct anionic and neutral semiquinone states of electron-transferring and bcd flavins. We also demonstrate that, unlike similar systems, no charge-transfer complex is observed on titration of the reduced M. elsdenii EtfAB with NAD. Finally, and significantly, we find that removal of the et FAD from EtfAB results in an uncrossing of the half-potentials of the bifurcating FAD that remains in the protein, as reflected in the accumulation of substantial FAD• in the course of reductive titrations of the depleted EtfAB with sodium dithionite.
我们对 EtfAB/bcd 的三个 FAD 进行了光谱去卷积,以了解还原过程中观察到的光谱变化,包括电子转移和 bcd 黄素的光谱上明显不同的阴离子和中性半醌状态。我们还证明,与类似系统不同,在滴定还原后的 M. elsdenii EtfAB 与 NAD 时,没有观察到电荷转移复合物。最后,也是非常重要的是,我们发现从 EtfAB 中去除 Et FAD 会导致分叉 FAD 的半电位不交叉,这反映在还原滴定过程中 EtfAB 与连二亚硫酸钠耗尽时 FAD•的大量积累。