4.8 Article

ATP-binding cassette transporter controls leaf surface secretion of anticancer drug components in Catharanthus roseus

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1307504110

Keywords

plasma membrane ABC-PDR-alkaloid transporter; secretion to plant surfaces; gene duplication; metabolic diversification

Funding

  1. Natural Sciences and Engineering Research Council of Canada (NSERC)
  2. NSERC/Binational Agricultural Research and Development Fund/Agriculture Canada team grant
  3. Canada Research Chairs
  4. Genome Canada
  5. Genome Alberta
  6. Genome Prairie
  7. Genome British Columbia
  8. Canada Foundation for Innovation
  9. Ontario Ministry of Research and Innovation
  10. National Research Council of Canada

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The Madagascar periwinkle (Catharanthus roseus) is highly specialized for the biosynthesis of many different monoterpenoid indole alkaloids (MIAs), many of which have powerful biological activities. Such MIAs include the commercially important chemotherapy drugs vinblastine, vincristine, and other synthetic derivatives that are derived from the coupling of catharanthine and vindoline. However, previous studies have shown that biosynthesis of these MIAs involves extensive movement of metabolites between specialized internal leaf cells and the leaf epidermis that require the involvement of unknown secretory processes for mobilizing catharanthine to the leaf surface and vindoline to internal leaf cells. Spatial separation of vindoline and catharanthine provides a clear explanation for the low levels of dimers that accumulate in intact plants. The present work describes the molecular cloning and functional identification of a unique catharanthine transporter (CrTPT2) that is expressed predominantly in the epidermis of young leaves. CrTPT2 gene expression is activated by treatment with catharanthine, and its in planta silencing redistributes catharanthine to increase the levels of catharanthine-vindoline drug dimers in the leaves. Phylogenetic analysis shows that CrTPT2 is closely related to a key transporter involved in cuticle assembly in plants and that may be unique to MIA-producing plant species, where it mediates secretion of alkaloids to the plant surface.

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