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Published on: October 30, 2014
A coordinated network of transporters with overlapping specificities provides a robust survival strategy
1Department of Biological Chemistry, Alexander A. Silberman Institute of Life Sciences, Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Abstract:
Multidrug transporters provide a survival strategy for living organisms. As expected given their central role in survival, these transporters are ubiquitous, and in many genomes, several genes coding for putative transporters have been identified. However, in an organism such as Escherichia coli mutations in genes coding for transporters other than the major AcrAB-TolC multidrug efflux transporter have only a marginal effect on phenotype. Thus, whether the physiological role of the transporters identified is indeed drug export has been questioned. We show here that the minor effect of single mutations is due to the overlapping functionality of several transporters. This was revealed by generating multiple chromosomal deletion mutations in genes coding for transporters that share the same substrate and testing their effect on the resistance phenotype. In addition, complementation studies imply that AcrAB-TolC confers robust resistance provided that single-component transporters in the plasma membrane are functional. This finding supports the contention that hydrophobic drugs are removed in a 2-stage process: AcrAB-TolC removes substrates from the periplasmic space, while single-component transporters remove them from the cell. The overlapping specificities of the transporters ensure coverage of a wide range of xenobiotics and provide robustness in the response to environmental stress. This strategy also confers evolvability to the organism by reducing constraints on change and allowing the accumulation of nonlethal variation.
Insights
Multiple drug transporters in Escherichia coli have overlapping functions, explaining why single mutations have minor effects. This redundancy ensures robust survival against toxic compounds and promotes bacterial evolution.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Multidrug transporters are crucial for organism survival and are found in many genomes.
- In Escherichia coli, the major AcrAB-TolC efflux transporter is well-studied, but the roles of other transporters are unclear due to marginal effects of single gene mutations.
Purpose of the Study:
- To investigate the physiological roles of minor multidrug transporters in Escherichia coli.
- To understand the collective contribution of transporters to drug resistance and bacterial survival.
Main Methods:
- Generated multiple chromosomal deletion mutations in genes encoding transporters with shared substrates.
- Assessed the impact of these mutations on the bacterial resistance phenotype.
- Conducted complementation studies to evaluate transporter interactions.
Main Results:
- Overlapping functionalities of multiple transporters mask the individual effects of single mutations.
- AcrAB-TolC provides robust resistance when plasma membrane transporters are functional.
- A two-stage drug removal process is proposed: AcrAB-TolC in the periplasm and single-component transporters in the cell membrane.
Conclusions:
- The overlapping specificities of transporters provide broad xenobiotic coverage and robust stress response.
- This redundant system enhances bacterial evolvability by reducing constraints and allowing variation accumulation.
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