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Mta, a global MerR-type regulator of the Bacillus subtilis multidrug-efflux transporters
N N Baranova1, A Danchin, A A Neyfakh
1Center for Pharmaceutical Biotechnology (M/C 870), University of Illinois, Chicago 60607, USA.
Abstract:
Little is known about the natural functions of multidrug-efflux transporters expressed by bacteria. Although identified as membrane proteins actively extruding exogenous toxins from the cell, they may actually be involved in the transport of as yet unidentified specific natural substrates. The expression of two highly similar multidrug transporters of Bacillus subtilis, Bmr and Blt, is regulated by specific transcriptional activators, BmrR and BltR, respectively, which respond to different inducer molecules, thus suggesting distinct functions for the two transporters. Here, we describe an alternative mechanism of regulation, which involves a global transcriptional activator, Mta, a member of the MerR family of bacterial regulatory proteins. The individually expressed N-terminal DNA-binding domain of Mta interacts directly with the promoters of bmr and blt and induces transcription of these genes. Additionally, this domain stimulates the expression of the mta gene itself and at least one more gene, ydfK, which encodes a hypothetical membrane protein. These results and the similarity of Mta to the thiostrepton-induced protein TipA of Streptomyces lividans strongly suggest that Mta is an autogenously controlled global transcriptional regulator, whose activity is stimulated by an as yet unidentified inducer. This stimulation is mimicked by the removal of the C-terminal inducer-binding domain. The fact that both Bmr and Blt are controlled by this regulator demonstrates that some of their functions are either identical or, at least, related. Further analysis of Mta-mediated regulation may reveal the natural function of the system of multidrug transporters in B. subtilis and serve as a paradigm for similar systems in other bacteria.
Insights
A novel global regulator, Mta, controls Bacillus subtilis multidrug transporters Bmr and Blt. This discovery may reveal the natural function of these transporters and similar bacterial systems.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Physiology
Background:
- The natural roles of bacterial multidrug-efflux transporters remain largely unknown.
- These transporters, while known to expel toxins, may transport specific natural substrates.
- Bacillus subtilis Bmr and Blt transporters are regulated by specific activators, suggesting distinct functions.
Purpose of the Study:
- To investigate alternative regulatory mechanisms for Bmr and Blt transporters in Bacillus subtilis.
- To identify novel regulators involved in the control of multidrug transporters.
- To elucidate the function of the MerR family regulator Mta.
Main Methods:
- Analysis of the transcriptional activator Mta, a MerR family member.
- Investigating the interaction of Mta's DNA-binding domain with bmr and blt promoters.
- Assessing the effect of Mta on its own gene expression and other genes like ydfK.
Main Results:
- Mta acts as a global transcriptional regulator, binding to bmr and blt promoters.
- Mta induces the transcription of bmr, blt, mta, and ydfK genes.
- Mta's activity is stimulated by an unknown inducer and mimicked by domain removal.
Conclusions:
- Mta represents an alternative regulatory mechanism for Bmr and Blt transporters.
- The co-regulation of Bmr and Blt by Mta suggests overlapping or related functions.
- Studying Mta may uncover the natural roles of bacterial multidrug transporter systems.