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Updated: Jun 20, 2026

Optimized PCR-based Detection of Mycoplasma
Published on: June 20, 2011
New selectable marker for manipulating the simple genomes of Mycoplasma species
Mikkel A Algire1, Carole Lartigue, David W Thomas
1The J. Craig Venter Institute, 9704 Medical Center Drive, Rockville, Maryland 20850, USA.
Abstract:
Over the past several years, significant advances have been made in the molecular genetics of the Mollicutes (the simplest cells that can be grown in axenic culture). Nevertheless, a number of basic molecular tools are still required before genetic manipulations become routine. Here we describe the development of a new dominant selectable marker based on the enzyme puromycin-N-acetyltransferase from Streptomyces alboniger. Puromycin is an antibiotic that mimics the 3'-terminal end of aminoacylated tRNAs and attaches to the carboxyl terminus of growing protein chains. This stops protein synthesis. Because puromycin conscripts rRNA recognition elements that are used by all of the various tRNAs in a cell, it is unlikely that spontaneous antibiotic resistance can be acquired via a simple point mutation--an annoying issue with existing mycoplasma markers. Our codon-optimized cassette confers pronounced puromycin resistance on all five of the mycoplasma species we have tested so far. The resistance cassette was also designed to function in Escherichia coli, which simplifies the construction of shuttle vectors and makes it trivial to produce the large quantities of DNA generally necessary for mycoplasma transformation. Due to these and other features, we expect the puromycin marker to be a widely applicable tool for studying these simple cells and pathogens.
Insights
Researchers developed a novel puromycin resistance marker for Mollicutes, enabling routine genetic manipulation. This tool offers broad applicability for studying these simple cells and pathogens.
Area of Science:
- Molecular biology
- Microbiology
- Genetics
Background:
- Mollicutes, the simplest cells culturable in vitro, require basic molecular tools for routine genetic manipulation.
- Existing genetic markers for Mollicutes present challenges, particularly regarding spontaneous antibiotic resistance acquisition.
Purpose of the Study:
- To develop a new dominant selectable marker for Mollicutes based on puromycin-N-acetyltransferase.
- To create a versatile tool for genetic studies in Mollicutes and facilitate DNA production in Escherichia coli.
Main Methods:
- Development of a codon-optimized puromycin resistance cassette.
- Testing the marker's efficacy in five different Mollicutes species.
- Ensuring the marker's functionality in Escherichia coli for shuttle vector construction.
Main Results:
- The developed marker confers significant puromycin resistance across tested Mollicutes species.
- The resistance mechanism is unlikely to be overcome by simple point mutations, unlike some existing markers.
- The marker functions effectively in Escherichia coli, simplifying DNA production for transformation.
Conclusions:
- The new puromycin resistance marker is a valuable and widely applicable tool for Mollicutes research.
- This advancement facilitates genetic manipulation and the study of Mollicutes, including important pathogens.
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