Cordycepin interferes with 3′ end formation in yeast independently of its potential to terminate RNA chain elongation

  1. Sandra Holbein1,2,
  2. Agnieszka Wengi1,
  3. Laurence Decourty3,
  4. Florian M. Freimoser4,
  5. Alain Jacquier3 and
  6. Bernhard Dichtl1
  1. 1Institute of Molecular Biology, University of Zürich, CH-8057 Zürich, Switzerland
  2. 2Ph.D. Program in Molecular Life Sciences, University of Zürich and Swiss Federal Institute of Technology (ETH) Zürich, CH-8092 Zürich, Switzerland
  3. 3Unité de Génétique des Interactions Macromoléculaires, CNRS-URA2171, Institut Pasteur, 75724 Paris CEDEX 15, France
  4. 4Institute of Plant Sciences, Swiss Federal Institute of Technology (ETH) Zürich, CH-8092 Zürich, Switzerland

    Abstract

    Cordycepin (3′ deoxyadenosine) is a biologically active compound that, when incorporated during RNA synthesis in vitro, provokes chain termination due to the absence of a 3′ hydroxyl moiety. We were interested in the effects mediated by this drug in vivo and analyzed its impact on RNA metabolism of yeast. Our results support the view that cordycepin-triphosphate (CoTP) is the toxic component that is limiting cell growth through inhibition of RNA synthesis. Unexpectedly, cordycepin treatment modulated 3′ end heterogeneity of ACT1 and ASC1 mRNAs and rapidly induced extended transcripts derived from CYH2 and NEL025c loci. Moreover, cordycepin ameliorated the growth defects of poly(A) polymerase mutants and the pap1-1 mutation neutralized the effects of the drug on gene expression. Our observations are consistent with an epistatic relationship between poly(A) polymerase function and cordycepin action and suggest that a major mode of cordycepin activity reduces 3′ end formation efficiency independently of its potential to terminate RNA chain elongation. Finally, chemical-genetic profiling revealed genome-wide pathways linked to cordycepin activity and identified novel genes involved in poly(A) homeostasis.

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    Keywords

    Footnotes

    • Reprint requests to: Bernhard Dichtl, Institute of Molecular Biology, University of Zürich, Winterthurer Strasse 190, CH-8057 Zürich, Switzerland; e-mail: Bernhard.Dichtl{at}molbio.uzh.ch; fax: 41-44-635-6811.

    • Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.1458909.

      • Received November 10, 2008.
      • Accepted January 30, 2009.
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