Crack, J.C.; Amara, P.; de Rosny, E.; Darnault, C.; Stapleton, M.R.; Green, J.; Volbeda, A.; Fontecilla-Camps, J.C.; Le Brun, N.E.
Probing the Reactivity of [4Fe-4S] Fumarate and Nitrate Reduction (FNR) Regulator with O2 and NO: Increased O2 Resistance and Relative Specificity for NO of the [4Fe-4S] L28H FNR Cluster. Inorganics 2023, 11, 450.
https://doi.org/10.3390/inorganics11120450
AMA Style
Crack JC, Amara P, de Rosny E, Darnault C, Stapleton MR, Green J, Volbeda A, Fontecilla-Camps JC, Le Brun NE.
Probing the Reactivity of [4Fe-4S] Fumarate and Nitrate Reduction (FNR) Regulator with O2 and NO: Increased O2 Resistance and Relative Specificity for NO of the [4Fe-4S] L28H FNR Cluster. Inorganics. 2023; 11(12):450.
https://doi.org/10.3390/inorganics11120450
Chicago/Turabian Style
Crack, Jason C., Patricia Amara, Eve de Rosny, Claudine Darnault, Melanie R. Stapleton, Jeffrey Green, Anne Volbeda, Juan C. Fontecilla-Camps, and Nick E. Le Brun.
2023. "Probing the Reactivity of [4Fe-4S] Fumarate and Nitrate Reduction (FNR) Regulator with O2 and NO: Increased O2 Resistance and Relative Specificity for NO of the [4Fe-4S] L28H FNR Cluster" Inorganics 11, no. 12: 450.
https://doi.org/10.3390/inorganics11120450
APA Style
Crack, J. C., Amara, P., de Rosny, E., Darnault, C., Stapleton, M. R., Green, J., Volbeda, A., Fontecilla-Camps, J. C., & Le Brun, N. E.
(2023). Probing the Reactivity of [4Fe-4S] Fumarate and Nitrate Reduction (FNR) Regulator with O2 and NO: Increased O2 Resistance and Relative Specificity for NO of the [4Fe-4S] L28H FNR Cluster. Inorganics, 11(12), 450.
https://doi.org/10.3390/inorganics11120450