Tran, S.-L.; Cormontagne, D.; Vidic, J.; André-Leroux, G.; Ramarao, N.
Structural Modeling of Cell Wall Peptidase CwpFM (EntFM) Reveals Distinct Intrinsically Disordered Extensions Specific to Pathogenic Bacillus cereus Strains. Toxins 2020, 12, 593.
https://doi.org/10.3390/toxins12090593
AMA Style
Tran S-L, Cormontagne D, Vidic J, André-Leroux G, Ramarao N.
Structural Modeling of Cell Wall Peptidase CwpFM (EntFM) Reveals Distinct Intrinsically Disordered Extensions Specific to Pathogenic Bacillus cereus Strains. Toxins. 2020; 12(9):593.
https://doi.org/10.3390/toxins12090593
Chicago/Turabian Style
Tran, Seav-Ly, Delphine Cormontagne, Jasmina Vidic, Gwenaëlle André-Leroux, and Nalini Ramarao.
2020. "Structural Modeling of Cell Wall Peptidase CwpFM (EntFM) Reveals Distinct Intrinsically Disordered Extensions Specific to Pathogenic Bacillus cereus Strains" Toxins 12, no. 9: 593.
https://doi.org/10.3390/toxins12090593
APA Style
Tran, S. -L., Cormontagne, D., Vidic, J., André-Leroux, G., & Ramarao, N.
(2020). Structural Modeling of Cell Wall Peptidase CwpFM (EntFM) Reveals Distinct Intrinsically Disordered Extensions Specific to Pathogenic Bacillus cereus Strains. Toxins, 12(9), 593.
https://doi.org/10.3390/toxins12090593