Active, pure bacterial recombinant enzyme
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BmrA (B. subtilis 168)

Item No. 24734

Technical Information
Synonyms
  • Multidrug Resistance ABC Transporter ATP-binding/permease Protein BmrA
Purity
≥90% estimated by SDS-PAGE
Source
N-terminal histidine-tagged B. subtilis strain 168 BmrA purified from E. coli
Amino Acids
Full-length, wild-type sequence
MW
64.5 kDa
50 mM Tris-Cl, pH 8.0, 100 mM NaCl, 0.01% DDM, and 10%glycerol
UniProt Accession №
O06967
Shipping & Storage Information
Storage
-80°C
Shipping
Dry ice in continental US; may vary elsewhere
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    Product Description

    B. subtilis multidrug resistance ATP-binding cassette (ABC) transporter ATP-binding protein (BmrA), also known as YvcC, is a multidrug ABC transporter that is constitutively expressed in B. subtilis.1 It belongs to the ABC family and shares sequence homology to mammalian P-glycoprotein (P-gp) and LmrA from L. lactis. BmrA is also homologous to HorA, a multidrug ABC transporter from L. brevis, Q8Y3T6 and Q8NXS2, putative transporters from Gram-positive bacteria, and MsbA, a lipid A transporter from E. coli. BmrA transports Hoechst, doxorubicin, and 7-aminoactinomycin D in an ATP-dependent manner. The ATPase mutants BmrAK380A and BmrAK380R are completely devoid of transport activity. Mutations in the intergenic region preceding bmrA increase BmrA mRNA expression and bmrA promoter activity in B. subtilis, which confer resistance to the antibiotic cervimycin C.2

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    References & Product Citations
    Product Description References

    1. Steinfels, E., Orelle, C., Fantino, J.-R., et alCharacterization of YvcC (BmrA), a multidrug ABC transporter constitutively expressed in Bacillus subtilis. Biochemistry 43(23), 7491-7502 (2004).

    2. Krügel, U., Licht, A., Biedermann, G., et alCervimycin C resistance in Bacillus subtilis is due to a promoter up-mutation and increased mRNA stability of the constitutive ABC-transporter gene bmrA. FEMS Microbiol. Lett. 313(2), 155-163 (2010).