REAL

Structural insights into the semiquinone form of human Cytochrome P450 reductase by DEER distance measurements between a native flavin and a spin labelled non-canonical amino acid

Bizet, M. and Byrne, D. and Biaso, F. and Gerbaud, G. and Etienne, E. and Briola, G. and Guigliarelli, B. and Urban, P. and Dorlet, P. and Kálai, T. and Truan, G. and Martinho, M. (2024) Structural insights into the semiquinone form of human Cytochrome P450 reductase by DEER distance measurements between a native flavin and a spin labelled non-canonical amino acid. CHEMISTRY-A EUROPEAN JOURNAL. ISSN 0947-6539 (In Press)

[img] Text
Marléne-paper.pdf
Restricted to Registered users only

Download (1MB) | Request a copy

Abstract

The flavoprotein Cytochrome P450 reductase (CPR) is the unique electron pathway from NADPH to Cytochrome P450 (CYPs). The conformational dynamics of human CPR in solution, which involves transitions from a "locked/closed" to an "unlocked/open" state, is crucial for electron transfer. To date, however, the factors guiding these changes remain unknown. By Site-Directed Spin Labelling coupled to Electron Paramagnetic Resonance spectroscopy, we have incorporated a non-canonical amino acid onto the flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD) domains of soluble human CPR, and labelled it with a specific nitroxide spin probe. Taking advantage of the endogenous FMN cofactor, we successfully measured for the first time, the distance distribution by DEER between the semiquinone state FMNH• and the nitroxide. The DEER data revealed a salt concentration-dependent distance distribution, evidence of an "open" CPR conformation at high salt concentrations exceeding previous reports. We also conducted molecular dynamics simulations which unveiled a diverse ensemble of conformations for the “open” semiquinone state of the CPR at high salt concentration. This study unravels the conformational landscape of the one electron reduced state of CPR, which had never been studied before.

Item Type: Article
Subjects: Q Science / természettudomány > QD Chemistry / kémia > QD02 Physical chemistry / fizikai kémia
Depositing User: Dr. Tamás Kálai
Date Deposited: 09 Feb 2024 12:50
Last Modified: 09 Feb 2024 12:50
URI: http://real.mtak.hu/id/eprint/187975

Actions (login required)

Edit Item Edit Item