4y9u Citations

Mutants of Cytochrome P450 Reductase Lacking Either Gly-141 or Gly-143 Destabilize Its FMN Semiquinone.

J Biol Chem 291 14639-61 (2016)
Related entries: 4y7c, 4y9r, 4yaf, 4yal, 4yao, 4yau, 4yaw

Cited: 16 times
EuropePMC logo PMID: 27189945

Abstract

NADPH-cytochrome P450 oxidoreductase transfers electrons from NADPH to cytochromes P450 via its FAD and FMN. To understand the biochemical and structural basis of electron transfer from FMN-hydroquinone to its partners, three deletion mutants in a conserved loop near the FMN were characterized. Comparison of oxidized and reduced wild type and mutant structures reveals that the basis for the air stability of the neutral blue semiquinone is protonation of the flavin N5 and strong H-bond formation with the Gly-141 carbonyl. The ΔGly-143 protein had moderately decreased activity with cytochrome P450 and cytochrome c It formed a flexible loop, which transiently interacts with the flavin N5, resulting in the generation of both an unstable neutral blue semiquinone and hydroquinone. The ΔGly-141 and ΔG141/E142N mutants were inactive with cytochrome P450 but fully active in reducing cytochrome c In the ΔGly-141 mutants, the backbone amide of Glu/Asn-142 forms an H-bond to the N5 of the oxidized flavin, which leads to formation of an unstable red anionic semiquinone with a more negative potential than the hydroquinone. The semiquinone of ΔG141/E142N was slightly more stable than that of ΔGly-141, consistent with its crystallographically demonstrated more rigid loop. Nonetheless, both ΔGly-141 red semiquinones were less stable than those of the corresponding loop in cytochrome P450 BM3 and the neuronal NOS mutant (ΔGly-810). Our results indicate that the catalytic activity of cytochrome P450 oxidoreductase is a function of the length, sequence, and flexibility of the 140s loop and illustrate the sophisticated variety of biochemical mechanisms employed in fine-tuning its redox properties and function.

Articles - 4y9u mentioned but not cited (3)

  1. Mutants of Cytochrome P450 Reductase Lacking Either Gly-141 or Gly-143 Destabilize Its FMN Semiquinone. Rwere F, Xia C, Im S, Haque MM, Stuehr DJ, Waskell L, Kim JJ. J Biol Chem 291 14639-14661 (2016)
  2. Measurement of Residual Dipolar Couplings Using Magnetically Aligned and Flipped Nanodiscs. Ravula T, Ramamoorthy A. Langmuir 38 244-252 (2022)
  3. The FMN "140s Loop" of Cytochrome P450 Reductase Controls Electron Transfer to Cytochrome P450. Rwere F, Im S, Waskell L. Int J Mol Sci 22 10625 (2021)


Reviews citing this publication (1)

Articles citing this publication (12)

  1. A Minimal Functional Complex of Cytochrome P450 and FBD of Cytochrome P450 Reductase in Nanodiscs. Prade E, Mahajan M, Im SC, Zhang M, Gentry KA, Anantharamaiah GM, Waskell L, Ramamoorthy A. Angew Chem Int Ed Engl 57 8458-8462 (2018)
  2. The Role of the FMN-Domain of Human Cytochrome P450 Oxidoreductase in Its Promiscuous Interactions With Structurally Diverse Redox Partners. Esteves F, Campelo D, Gomes BC, Urban P, Bozonnet S, Lautier T, Rueff J, Truan G, Kranendonk M. Front Pharmacol 11 299 (2020)
  3. Orchestrated Domain Movement in Catalysis by Cytochrome P450 Reductase. Freeman SL, Martel A, Raven EL, Roberts GCK. Sci Rep 7 9741 (2017)
  4. Structure of the Arabidopsis thaliana NADPH-cytochrome P450 reductase 2 (ATR2) provides insight into its function. Niu G, Zhao S, Wang L, Dong W, Liu L, He Y. FEBS J 284 754-765 (2017)
  5. Conformational Landscape of Cytochrome P450 Reductase Interactions. Sellner M, Fischer A, Don CG, Smieško M. Int J Mol Sci 22 1023 (2021)
  6. Structural and Kinetic Studies of Asp632 Mutants and Fully Reduced NADPH-Cytochrome P450 Oxidoreductase Define the Role of Asp632 Loop Dynamics in the Control of NADPH Binding and Hydride Transfer. Xia C, Rwere F, Im S, Shen AL, Waskell L, Kim JP. Biochemistry 57 945-962 (2018)
  7. Application of methyl-TROSY to a large paramagnetic membrane protein without perdeuteration: 13C-MMTS-labeled NADPH-cytochrome P450 oxidoreductase. Galiakhmetov AR, Kovrigina EA, Xia C, Kim JP, Kovrigin EL. J Biomol NMR 70 21-31 (2018)
  8. Electrostatics and water occlusion regulate covalently-bound flavin mononucleotide cofactors of Vibrio cholerae respiratory complex NQR. Willow SY, Yuan M, Juárez O, Minh DDL. Proteins 89 1376-1385 (2021)
  9. Exploring Novel Variants of the Cytochrome P450 Reductase Gene (POR) from the Genome Aggregation Database by Integrating Bioinformatic Tools and Functional Assays. Rojas Velazquez MN, Therkelsen S, Pandey AV. Biomolecules 13 1728 (2023)
  10. Integration of transcriptomic and metabolomic analysis of the mechanism of dietary N-carbamoylglutamate in promoting follicle development in yaks. Zhou J, Yue S, Du J, Xue B, Wang L, Peng Q, Zou H, Hu R, Jiang Y, Wang Z, Xue B. Front Vet Sci 9 946893 (2022)
  11. Loss of Protein Stability and Function Caused by P228L Variation in NADPH-Cytochrome P450 Reductase Linked to Lower Testosterone Levels. Rojas Velazquez MN, Noebauer M, Pandey AV. Int J Mol Sci 23 10141 (2022)
  12. Short-lived neutral FMN and FAD semiquinones are transient intermediates in cryo-reduced yeast NADPH-cytochrome P450 reductase. Davydov RM, Jennings G, Hoffman BM, Podust LM. Arch Biochem Biophys 673 108080 (2019)