Multidrug resistance mediated by a bacterial homolog of the human multidrug transporter MDR1.
HW Van Veen, K Venema, H Bolhuis… - Proceedings of the …, 1996 - National Acad Sciences
Proceedings of the National Academy of Sciences, 1996•National Acad Sciences
Resistance of Lactococcus lactis to cytotoxic compounds shares features with the multidrug
resistance phenotype of mammalian tumor cells. Here, we report the gene cloning and
functional characterization in Escherichia coli of LmrA, a lactococcal structural and functional
homolog of the human multidrug resistance P-glycoprotein MDR1. LmrA is a 590-aa
polypeptide that has a putative topology of six alpha-helical transmembrane segments in the
N-terminal hydrophobic domain, followed by a hydrophilic domain containing the ATP …
resistance phenotype of mammalian tumor cells. Here, we report the gene cloning and
functional characterization in Escherichia coli of LmrA, a lactococcal structural and functional
homolog of the human multidrug resistance P-glycoprotein MDR1. LmrA is a 590-aa
polypeptide that has a putative topology of six alpha-helical transmembrane segments in the
N-terminal hydrophobic domain, followed by a hydrophilic domain containing the ATP …
Resistance of Lactococcus lactis to cytotoxic compounds shares features with the multidrug resistance phenotype of mammalian tumor cells. Here, we report the gene cloning and functional characterization in Escherichia coli of LmrA, a lactococcal structural and functional homolog of the human multidrug resistance P-glycoprotein MDR1. LmrA is a 590-aa polypeptide that has a putative topology of six alpha-helical transmembrane segments in the N-terminal hydrophobic domain, followed by a hydrophilic domain containing the ATP-binding site. LmrA is similar to each of the two halves of MDR1 and may function as a homodimer. The sequence conservation between LmrA and MDR1 includes particular regions in the transmembrane domains and connecting loops, which, in MDR1 and the MDR1 homologs in other mammalian species, have been implicated as determinants of drug recognition and binding. LmrA and MDR1 extrude a similar spectrum of amphiphilic cationic compounds, and the activity of both systems is reversed by reserpine and verapamil. As LmrA can be functionally expressed in E. coli, it offers a useful prokaryotic model for future studies on the molecular mechanism of MDR1-like multidrug transporters.
National Acad Sciences
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