A spontaneous point mutation in the single 23S rRNA gene of the thermophilic arachaeon Sulfolobus acidocaldarius confers multiple drug resistance

Author:

Aagaard C1,Phan H1,Trevisanato S1,Garrett R A1

Affiliation:

1. Institute of Molecular Biology, Copenhagen University, Denmark.

Abstract

Development of transformable vectors for thermophilic archaea requires the characterization of appropriate selectable marker genes. Many antibiotic inhibitors of protein biosynthesis are known to bind to rRNA; therefore, we screened 14 for their capacity to inhibit growth of the thermophilic archaeon Sulfolobus acidocaldarius. Carbomycin, celesticetin, chloramphenicol, puromycin, sparsomycin, tetracycline, and thiostrepton all inhibited growth by different degrees. Spontaneous drug-resistant mutants were isolated from plates containing celesticetin or chloramphenicol. Six mutants from each plate exhibited a C-2585-to-U transition in the peptidyl transferase loop of 23S rRNA (corresponding to C-2452 in Escherichia coli 23S rRNA). The single-site mutation also conferred resistance to carbomycin. The mutated 23S rRNA gene provides a potentially useful and dominant marker for a thermophilic archael vector.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference28 articles.

1. Aagaard C. J. Z. Dalgaard and R. A. Garrett. Submitted for publication.

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3. Sulfolobus: a new genus of sulfur-oxidizing bacteria living at low pH and high temperature;Brock T. D.;Arch. Microbiol.,1972

4. Thermus aquaticus gen. n. and sp. n., a nonsporulating extreme thermophile;Brock T. D.;J. Bacteriol.,1969

5. Cloning of lincosamide resistance determinant from Streptomyces caelestis, the producer of celesticetin, and characterization of the resistance mechanism;Calcutt M. J.;J. Bacteriol.,1990

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