4.7 Article

Expression of aMalasseziaCodon Optimized mCherry Fluorescent Protein in a Bicistronic Vector

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcimb.2020.00367

关键词

Malassezia; fluorescent; multicistronic; bicistronic; transformation; tagging; 2A

资金

  1. Agency for Science, Technology and Research IAF-PP (HBMS) grant Asian Skin Microbiome Project [H1801a0016]
  2. NIH/NIAID R37 grant [AI39115-22]
  3. NIH/NIAID R01 grant [AI50113-15]

向作者/读者索取更多资源

The use of fluorescent proteins allows a multitude of approaches from live imaging and fixed cells to labeling of whole organisms, making it a foundation of diverse experiments. Tagging a protein of interest or specific cell type allows visualization and studies of cell localization, cellular dynamics, physiology, and structural characteristics. In specific instances fluorescent fusion proteins may not be properly functional as a result of structural changes that hinder protein function, or when overexpressed may be cytotoxic and disrupt normal biological processes. In our study, we describe application of a bicistronic vector incorporating a Picornavirus 2A peptide sequence between aNATantibiotic selection marker and mCherry. This allows expression of multiple genes from a single open reading frame and production of discrete protein products through a cleavage event within the 2A peptide. We demonstrate integration of this bicistronic vector into a modelMalasseziaspecies, the haploid strainM. furfurCBS 14141, with both active selection, high fluorescence, and proven proteolytic cleavage. Potential applications of this technology can include protein functional studies,Malasseziacellular localization, and co-expression of genes required for targeted mutagenesis.

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