Tanvir Rahman, M., Koski, M. K., Panecka-Hofman, J., Schmitz, W., Kastaniotis, A. J., Wade, R. C., . . . Autio, K. J. (2023). An engineered variant of MECR reductase reveals indispensability of long-chain acyl-ACPs for mitochondrial respiration. Nature Communications, 14, . https://doi.org/10.1038/s41467-023-36358-7
Chicago-Zitierstil (17. Ausg.)Tanvir Rahman, Mohammad, M. Kristian Koski, Joanna Panecka-Hofman, Werner Schmitz, Alexander J. Kastaniotis, Rebecca C. Wade, Rik K. Wierenga, J. Kalervo Hiltunen, und Kaija J. Autio. "An Engineered Variant of MECR Reductase Reveals Indispensability of Long-chain Acyl-ACPs for Mitochondrial Respiration." Nature Communications 14 (2023). https://doi.org/10.1038/s41467-023-36358-7.
MLA-Zitierstil (9. Ausg.)Tanvir Rahman, Mohammad, et al. "An Engineered Variant of MECR Reductase Reveals Indispensability of Long-chain Acyl-ACPs for Mitochondrial Respiration." Nature Communications, vol. 14, 2023, https://doi.org/10.1038/s41467-023-36358-7.