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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.

Molecular Microbiology
|April 14, 1999
PubMed

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.

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