Laine, É.; MartÃnez, L.; Ladant, D.; Malliavin, T.; Blondel, A.
Molecular Motions as a Drug Target: Mechanistic Simulations of Anthrax Toxin Edema Factor Function Led to the Discovery of Novel Allosteric Inhibitors. Toxins 2012, 4, 580-604.
https://doi.org/10.3390/toxins4080580
AMA Style
Laine É, MartÃnez L, Ladant D, Malliavin T, Blondel A.
Molecular Motions as a Drug Target: Mechanistic Simulations of Anthrax Toxin Edema Factor Function Led to the Discovery of Novel Allosteric Inhibitors. Toxins. 2012; 4(8):580-604.
https://doi.org/10.3390/toxins4080580
Chicago/Turabian Style
Laine, Élodie, Leandro MartÃnez, Daniel Ladant, Thérèse Malliavin, and Arnaud Blondel.
2012. "Molecular Motions as a Drug Target: Mechanistic Simulations of Anthrax Toxin Edema Factor Function Led to the Discovery of Novel Allosteric Inhibitors" Toxins 4, no. 8: 580-604.
https://doi.org/10.3390/toxins4080580
APA Style
Laine, É., MartÃnez, L., Ladant, D., Malliavin, T., & Blondel, A.
(2012). Molecular Motions as a Drug Target: Mechanistic Simulations of Anthrax Toxin Edema Factor Function Led to the Discovery of Novel Allosteric Inhibitors. Toxins, 4(8), 580-604.
https://doi.org/10.3390/toxins4080580