Identification of a Cryptic Bacterial Promoter in Mouse (mdr1a) P-Glycoprotein cDNA

The efflux transporter P-glycoprotein (P-gp) is an important mediator of various pharmacokinetic parameters, being expressed at numerous physiological barriers and also in multidrug-resistant cancer cells. Molecular cloning of homologous cDNAs is an important tool for the characterization of functio...

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Veröffentlicht in:PloS one 2015-08, Vol.10 (8), p.e0136396
Hauptverfasser: Pluchino, Kristen M, Esposito, Dominic, Moen, Janna K, Hall, Matthew D, Madigan, James P, Shukla, Suneet, Procter, Lauren V, Wall, Vanessa E, Schneider, Thomas D, Pringle, Ian, Ambudkar, Suresh V, Gill, Deborah R, Hyde, Steven C, Gottesman, Michael M
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container_title PloS one
container_volume 10
creator Pluchino, Kristen M
Esposito, Dominic
Moen, Janna K
Hall, Matthew D
Madigan, James P
Shukla, Suneet
Procter, Lauren V
Wall, Vanessa E
Schneider, Thomas D
Pringle, Ian
Ambudkar, Suresh V
Gill, Deborah R
Hyde, Steven C
Gottesman, Michael M
description The efflux transporter P-glycoprotein (P-gp) is an important mediator of various pharmacokinetic parameters, being expressed at numerous physiological barriers and also in multidrug-resistant cancer cells. Molecular cloning of homologous cDNAs is an important tool for the characterization of functional differences in P-gp between species. However, plasmids containing mouse mdr1a cDNA display significant genetic instability during cloning in bacteria, indicating that mdr1a cDNA may be somehow toxic to bacteria, allowing only clones containing mutations that abrogate this toxicity to survive transformation. We demonstrate here the presence of a cryptic promoter in mouse mdr1a cDNA that causes mouse P-gp expression in bacteria. This expression may account for the observed toxicity of mdr1a DNA to bacteria. Sigma 70 binding site analysis and GFP reporter plasmids were used to identify sequences in the first 321 bps of mdr1a cDNA capable of initiating bacterial protein expression. An mdr1a M107L cDNA containing a single residue mutation at the proposed translational start site was shown to allow sub-cloning of mdr1a in E. coli while retaining transport properties similar to wild-type P-gp. This mutant mdr1a cDNA may prove useful for efficient cloning of mdr1a in E. coli.
doi_str_mv 10.1371/journal.pone.0136396
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subjects Animals
ATP Binding Cassette Transporter, Subfamily B - genetics
ATP Binding Cassette Transporter, Subfamily B - metabolism
Bacteria
Binding Sites
Biology
Biomedical research
Blotting, Western
Cancer
Cancer therapies
Cloning
Complementary DNA
Cystic fibrosis
Deoxyribonucleic acid
DNA
DNA, Complementary - genetics
DNA-Directed RNA Polymerases - metabolism
Drug resistance
E coli
Efflux
Escherichia coli
Escherichia coli - genetics
Escherichia coli - growth & development
Escherichia coli - metabolism
Flow Cytometry
Gene expression
Genetic transformation
Genomic instability
Glycoproteins
Health aspects
HEK293 Cells
Homology
Humans
Laboratories
Medical research
Medicine
Metabolism
Metabolites
Mice
Microscopy, Confocal
Molecular chains
Multidrug resistance
Mutation
P-Glycoprotein
Pharmacokinetics
Pharmacology
Physiological aspects
Physiology
Plasmids
Plasmids - genetics
Promoter Regions, Genetic - genetics
Protein Conformation
Protein expression
Proteins
Sigma Factor - metabolism
Spectrometry, Fluorescence
Stability
Toxicity
Transformation
title Identification of a Cryptic Bacterial Promoter in Mouse (mdr1a) P-Glycoprotein cDNA
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