Kwofie, S.K.; Dankwa, B.; Enninful, K.S.; Adobor, C.; Broni, E.; Ntiamoah, A.; Wilson, M.D.
Molecular Docking and Dynamics Simulation Studies Predict Munc18b as a Target of Mycolactone: A Plausible Mechanism for Granule Exocytosis Impairment in Buruli Ulcer Pathogenesis. Toxins 2019, 11, 181.
https://doi.org/10.3390/toxins11030181
AMA Style
Kwofie SK, Dankwa B, Enninful KS, Adobor C, Broni E, Ntiamoah A, Wilson MD.
Molecular Docking and Dynamics Simulation Studies Predict Munc18b as a Target of Mycolactone: A Plausible Mechanism for Granule Exocytosis Impairment in Buruli Ulcer Pathogenesis. Toxins. 2019; 11(3):181.
https://doi.org/10.3390/toxins11030181
Chicago/Turabian Style
Kwofie, Samuel K., Bismark Dankwa, Kweku S. Enninful, Courage Adobor, Emmanuel Broni, Alfred Ntiamoah, and Michael D. Wilson.
2019. "Molecular Docking and Dynamics Simulation Studies Predict Munc18b as a Target of Mycolactone: A Plausible Mechanism for Granule Exocytosis Impairment in Buruli Ulcer Pathogenesis" Toxins 11, no. 3: 181.
https://doi.org/10.3390/toxins11030181
APA Style
Kwofie, S. K., Dankwa, B., Enninful, K. S., Adobor, C., Broni, E., Ntiamoah, A., & Wilson, M. D.
(2019). Molecular Docking and Dynamics Simulation Studies Predict Munc18b as a Target of Mycolactone: A Plausible Mechanism for Granule Exocytosis Impairment in Buruli Ulcer Pathogenesis. Toxins, 11(3), 181.
https://doi.org/10.3390/toxins11030181