Acedo, JZ; van Belkum, MJ; Lohans, CT; Towle, KM; Miskolzie, M and Vederas, JC (2016). Nuclear magnetic resonance solution structures of lacticin Q and aureocin A53 reveal a structural motif conserved among leaderless bacteriocins with broad-spectrum activity. Biochemistry, 55: 733-742.
Brunelle, JL and Green, R (2014). One-dimensional SDS-polyacrylamide gel electrophoresis (1D SDS-PAGE). Methods Enzymol., 541: 151-159.
Ceotto, H; Brede, D; Salehian, Z; Dos Santos Nascimento, J; Fagundes, PC; Nes, IF and Do Carmo De Freire Bastos, M (2010). Aureocins 4185, bacteriocins produced by Staphylococcus aureus 4185: potential application in food preservation. Foodborne Pathog. Dis., 7: 1255-1262.
Fagundes, PC; Farias, FM; Santos, OCS; De Oliveira, NEM; Da Paz, JAS; Ceotto-Vigoder, H and Do Carmo De Freire Bastos, M (2016). The antimicrobial peptide aureocin A53 as an alternative agent for biopreservation of dairy products. J. Appl. Microbiol., 121: 435-444.
Guryanova, SV (2023). Immunomodulation, bioavailability and safety of bacteriocins. Life, 13: 1521.
Hammond, K; Lewis, H; Halliwell, S; Desriac, F; Nardone, B; Ravi, J and Ryadnov, MG (2020). Flowering poration—A synergistic multi-mode antibacterial mechanism by a bacteriocin fold. iScience, 23: 101423.
Jaouani, I; Abbassi, MS; Alessandria, V; Bouraoui, J; Ben Salem, R; Kilani, H and Cocolin, L (2014). High inhibition of Paenibacillus larvae and Listeria monocytogenes by Enterococcus isolated from different sources in Tunisia and identification of their bacteriocin genes. Lett. Appl. Microbiol., 59: 17-25.
Krishnamoorthy, P; Suresh, KP; Jayamma, KS; Shome, BR; Patil, SS and Amachawadi, RG (2021). An understanding of the global status of major bacterial pathogens of milk concerning bovine mastitis: A systematic review and meta-analysis. Pathogens, 10: 545.
Lander, AJ; Mercado, LD; Li, X; Taily, IM; Findlay, BL;
Jin, Y and Luk, LYP (2023). Roles of inter- and intramolecular tryptophan interactions in membrane-active proteins revealed by racemic protein crystallography. Commun. Chem., 6: 154.
Marques-Bastos, SLS; Coelho, MLV; de Sousa Santos, IN; Moreno, DSA; Barrias, ES; de Mendonça, JFM and Do Carmo de Freire Bastos, M (2022). Effects of the natural antimicrobial peptide aureocin A53 on cells of Staphylococcus aureus and Streptococcus agalactiae involved in bovine mastitis in the excised teat model. World J. Microbiol. Biotechnol., 39: 5.
Molineri, AI; Camussone, C; Zbrun, MV; Suárez Archilla, G; Cristiani, M; Neder, V and Signorini, M (2021). Antimicrobial resistance of Staphylococcus aureus isolated from bovine mastitis: Systematic review and meta-analysis. Prev. Vet. Med., 188: 105261.
Netz, DJA; Bastos, MDCDF and Sahl, HG (2002b). Mode of action of the antimicrobial peptide aureocin A53 from Staphylococcus aureus. Appl. Environ. Microbiol., 68: 5274-5280.
Netz, DJA; Pohl, R; Beck-Sickinger, AG; Selmer, T; Pierik, AJ; Bastos, MDCDF and Sahl, HG (2002a). Biochemical characterization and genetic analysis of aureocin A53, a new, atypical bacteriocin from Staphylococcus aureus. J. Mol. Biol., 319: 745-756.
Novagen (2011). pET system manual. 11th Edn., Madison, WI, USA, Novagen. PP: 33-38.
Parachin, NS; Mulder, KC; Viana, AAB; Dias, SC and Franco, OL (2012). Expression systems for heterologous production of antimicrobial peptides. Peptides, 38: 446-456.
Perez, RH; Zendo, T and Sonomoto, K (2018). Circular and leaderless bacteriocins: Biosynthesis, mode of action, applications, and prospects. Front. Microbiol., 9: 2085.
Rosano, GL and Ceccarelli, EA (2014). Recombinant protein expression in Escherichia coli: Advances and challenges. Front. Microbiol., 5: 172.
Sivashanmugam, A; Murray, V; Cui, C; Zhang, Y; Wang, J and Li, Q (2009). Practical protocols for production of very high yields of recombinant proteins using Escherichia coli. Protein Sci., 18: 936-948.
Soltani, S; Hammami, R; Cotter, PD; Rebuffat, S; Said, LB; Gaudreau, H and Fliss, I (2021). Bacteriocins as a new generation of antimicrobials: Toxicity aspects and regulations. FEMS Microbiol. Rev., 45: fuaa039.
Studier, FW (2005). Protein production by auto-induction in high density shaking cultures. Protein Expr. Purif., 41: 207-234.
Varella Coelho, ML; Santos Nascimento, JD; Fagundes, PC; Madureira, DJ; Oliveira, SSD; Vasconcelos De Paiva Brito, MA and Do Carmo De Freire Bastos, M (2007). Activity of staphylococcal bacteriocins against Staphylococcus aureus and Streptococcus agalactiae involved in bovine mastitis. Res. Microbiol., 158: 625-630.