Doxycycline-regulated gene expression in the opportunistic fungal pathogen Aspergillus fumigatus
Keith Vogt1, Ruchi Bhabhra, Judith C Rhodes
1Dept. of Pathology & Laboratory Medicine, University of Cincinnati College of Medicine, 231 Albert Sabin Way, Cincinnati, OH 45267-0529, USA. vogt.53@osu.edu <vogt.53@osu.edu>
Background:
Although Aspergillus fumigatus is an important human fungal pathogen there are few expression systems available to study the contribution of specific genes to the growth and virulence of this opportunistic mould. Regulatable promoter systems based upon prokaryotic regulatory elements in the E. coli tetracycline-resistance operon have been successfully used to manipulate gene expression in several organisms, including mice, flies, plants, and yeast. However, the system has not yet been adapted for Aspergillus spp.
Results:
Here we describe the construction of plasmid vectors that can be used to regulate gene expression in A. fumigatus using a simple co-transfection approach. Vectors were generated in which the tetracycline transactivator (tTA) or the reverse tetracycline transactivator (rtTA2s-M2) are controlled by the A. nidulans gpdA promoter. Dominant selectable cassettes were introduced into each plasmid, allowing for selection following gene transfer into A. fumigatus by incorporating phleomycin or hygromycin into the medium. To model an essential gene under tetracycline regulation, the E. coli hygromycin resistance gene, hph, was placed under the control of seven copies of the TetR binding site (tetO7) in a plasmid vector and co-transfected into A. fumigatus protoplasts together with one of the two transactivator plasmids. Since the hph gene is essential to A. fumigatus in the presence of hygromycin, resistance to hygromycin was used as a marker of hph reporter gene expression. Transformants were identified in which the expression of tTA conferred hygromycin resistance by activating expression of the tetO7-hph reporter gene, and the addition of doxycycline to the medium suppressed hygromycin resistance in a dose-dependent manner. Similarly, transformants were identified in which expression of rtTA2s-M2 conferred hygromycin resistance only in the presence of doxycycline. The levels of doxycycline required to regulate expression of the tetO7-hph reporter gene were within non-toxic ranges for this organism, and low-iron medium was shown to reduce the amount of doxycycline required to accomplish regulation.
Conclusions:
The vectors described in this report provide a new set of options to experimentally manipulate the level of specific gene products in A. fumigatus.
Insights
Researchers developed new plasmid vectors for regulating gene expression in Aspergillus fumigatus. This system allows for controlled manipulation of gene products, aiding studies on fungal growth and virulence.
Area of Science:
- Mycology
- Molecular Biology
- Genetic Engineering
Background:
- Aspergillus fumigatus is a significant human fungal pathogen.
- Limited expression systems hinder research into gene function in A. fumigatus.
- Tetracycline-inducible systems are established in other organisms but not yet in Aspergillus spp.
Purpose of the Study:
- To develop and characterize novel, regulatable gene expression systems for Aspergillus fumigatus.
- To adapt the E. coli tetracycline-resistance operon for use in Aspergillus spp.
- To provide tools for studying gene contributions to A. fumigatus growth and virulence.
Main Methods:
- Construction of plasmid vectors encoding tetracycline transactivator (tTA) or reverse tetracycline transactivator (rtTA2s-M2) under the A. nidulans gpdA promoter.
- Co-transfection of A. fumigatus protoplasts with transactivator plasmids and a reporter plasmid containing the E. coli hygromycin resistance gene (hph) under TetR binding site control (tetO7).
- Selection of transformants using phleomycin or hygromycin and assessment of gene expression regulation by doxycycline.
Main Results:
- Successfully generated vectors for tetracycline-regulated gene expression in A. fumigatus.
- Demonstrated dose-dependent suppression of hygromycin resistance (hph expression) by doxycycline with tTA.
- Showed doxycycline-dependent induction of hph expression with rtTA2s-M2 at non-toxic levels.
- Identified that low-iron medium reduces required doxycycline concentrations for regulation.
Conclusions:
- The developed plasmid vectors offer a novel method for experimental manipulation of gene expression in A. fumigatus.
- These tools enable precise control over specific gene product levels.
- Facilitates future research on the functional roles of genes in A. fumigatus pathogenesis and biology.
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