Kumar, H.; Khosraneh, M.; Bandaru, S.S.M.; Schulzke, C.; Leimkühler, S.
The Mechanism of Metal-Containing Formate Dehydrogenases Revisited: The Formation of Bicarbonate as Product Intermediate Provides Evidence for an Oxygen Atom Transfer Mechanism. Molecules 2023, 28, 1537.
https://doi.org/10.3390/molecules28041537
AMA Style
Kumar H, Khosraneh M, Bandaru SSM, Schulzke C, Leimkühler S.
The Mechanism of Metal-Containing Formate Dehydrogenases Revisited: The Formation of Bicarbonate as Product Intermediate Provides Evidence for an Oxygen Atom Transfer Mechanism. Molecules. 2023; 28(4):1537.
https://doi.org/10.3390/molecules28041537
Chicago/Turabian Style
Kumar, Hemant, Maryam Khosraneh, Siva S. M. Bandaru, Carola Schulzke, and Silke Leimkühler.
2023. "The Mechanism of Metal-Containing Formate Dehydrogenases Revisited: The Formation of Bicarbonate as Product Intermediate Provides Evidence for an Oxygen Atom Transfer Mechanism" Molecules 28, no. 4: 1537.
https://doi.org/10.3390/molecules28041537
APA Style
Kumar, H., Khosraneh, M., Bandaru, S. S. M., Schulzke, C., & Leimkühler, S.
(2023). The Mechanism of Metal-Containing Formate Dehydrogenases Revisited: The Formation of Bicarbonate as Product Intermediate Provides Evidence for an Oxygen Atom Transfer Mechanism. Molecules, 28(4), 1537.
https://doi.org/10.3390/molecules28041537