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A New Twist in ABC Transporter Mediated Multidrug Resistance – Pdr5 is a Drug/proton Co-transporter

Authors :
Manuel Wagner
Daniel Blum
Stefanie L. Raschka
Lea-Marie Nentwig
Christoph G. W. Gertzen
Minghao Chen
Christos Gatsogiannis
Andrzej Harris
Sander H. J. Smits
Richard Wagner
Lutz Schmitt
Source :
Journal of Molecular Biology. 434:167669
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

The two major efflux pump systems are involved in multidrug resistance (MDR): (i) ATP binding cassette (ABC) transporters and (ii) secondary transporters. While the former use binding and hydrolysis of ATP to facilitate export of cytotoxic compounds, the latter utilize electrochemical gradients to expel their substrates. Pdr5 from Saccharomyces cerevisiae is a prominent member of eukaryotic ABC transporters that are involved in MDR and used as a frequently studied model system. Although investigated for decades, the underlying molecular mechanisms of transport and specificity remain elusive. Here, we provide electrophysiological data on reconstituted Pdr5 demonstrating that this MDR efflux pump does not only actively translocate its substrates across the lipid bilayer, but generates a proton motif force in the presence of Mg2+-ATP and substrates by acting as a proton/drug co-transporter. Importantly, a strictly substrate dependent co-transport of protons was also observed in in vitro transport studies using Pdr5-enriched plasma membranes. Similar observations have not yet been reported for any other MDR efflux pump. We conclude from these results that the mechanism of MDR conferred by Pdr5 and likely other transporters is more complex than the sole extrusion of cytotoxic compounds and involves secondary coupled processes suitable to increase the effectiveness.

Details

ISSN :
00222836
Volume :
434
Database :
OpenAIRE
Journal :
Journal of Molecular Biology
Accession number :
edsair.doi.dedup.....139bebf2d4bda85ba3943a07dd778e49
Full Text :
https://doi.org/10.1016/j.jmb.2022.167669