ARDB-Antibiotic Resistance Genes Database

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Your Query:     Database: Resistance Gene(ALL)    Species: Bacillus anthracis str. A0193    

12 resistance genes are found

Gene IDGene TypeResistance ProfileDescription
EDR87299bacabacitracin; Undecaprenyl pyrophosphate phosphatase, which consists in the sequestration of Undecaprenyl pyrophosphate.

ZP_02397591bacabacitracin; Undecaprenyl pyrophosphate phosphatase, which consists in the sequestration of Undecaprenyl pyrophosphate.

ZP_02396210bl2a_iiipenicillin; Class A beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.

ZP_02396564fosbfosfomycin; Glutathione transferase, metalloglutathione transferase which confers resistance to fosfomycin by catalyzing the addition of glutathione to fosfomycin

EDR86478fosbfosfomycin; Glutathione transferase, metalloglutathione transferase which confers resistance to fosfomycin by catalyzing the addition of glutathione to fosfomycin

ZP_02398376bacabacitracin; Undecaprenyl pyrophosphate phosphatase, which consists in the sequestration of Undecaprenyl pyrophosphate.

ZP_02395450bl2a_1penicillin; Class A beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.

EDR89847bl2a_iiipenicillin; Class A beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.

EDR88957fosbfosfomycin; Glutathione transferase, metalloglutathione transferase which confers resistance to fosfomycin by catalyzing the addition of glutathione to fosfomycin

EDR88132bacabacitracin; Undecaprenyl pyrophosphate phosphatase, which consists in the sequestration of Undecaprenyl pyrophosphate.

ZP_02399296fosbfosfomycin; Glutathione transferase, metalloglutathione transferase which confers resistance to fosfomycin by catalyzing the addition of glutathione to fosfomycin

EDR90043bl2a_1penicillin; Class A beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.