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February 19, 2026International Journal of Molecular Sciences0 citationsOpen Access

Yeast as a Platform to Dissect Poly(ADP-Ribose) Polymerase Function from Magnaporthe oryzae and Evaluate PARP Inhibitors

RKRachel E. KalicharanNPNalleli PayneJRJesús Reviriego

Key Points

  • The aim is to understand the function of the Magnaporthe oryzae PARP1 and assess PARP inhibitors using yeast.
  • Reconstituted MoPARP1 activity in Saccharomyces cerevisiae
  • Induced MoPARP1 expression with galactose
  • Examined growth phenotypes with wild-type and mutant forms
  • Utilized PARP inhibitors to assess growth rescue
  • Analyzed localization of MoPARP1-GFP in yeast
  • MoPARP1 expression reduced yeast growth, indicating reliance on PARP activity
  • PARylation was detected in yeast cells expressing MoPARP1
  • Inhibitors 3-aminobenzamide and olaparib rescued growth in specific background
  • MoPARP1-GFP localized to the nucleus, independent of its catalytic function

Abstract

Poly(ADP-ribose) polymerases (PARPs) regulate genome maintenance through NAD+-dependent ADP-ribosylation, yet PARP function in fungi remains poorly defined. Here, we reconstituted the activity of the Magnaporthe oryzae PARP1 homolog (MoPARP1) in Saccharomyces cerevisiae, a genetically tractable organism that lacks endogenous PARP enzymes. Upon galactose induction, expression of MoPARP1 reduced yeast growth, whereas a catalytically inactive mutant showed no defect, indicating that the growth phenotype depends on PARP catalytic activity. Consistent with this requirement, PARylation was detected in MoPARP1-expressing yeast cells but not in the catalytic mutant. In a multidrug transporter-deficient background, the PARP inhibitor 3-aminobenzamide and the clinically used PARP inhibitor olaparib rescued the growth of MoPARP1-expressing strains, establishing a framework for inhibitor testing in vivo. Finally, MoPARP1-GFP localized to the nucleus independent of catalytic activity, supporting correct targeting in this heterologous system. Together, these findings establish yeast as a platform to dissect fungal PARP biology and evaluate chemical inhibition.

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Cite This Study

Kalicharan et al. (2026) studied this question.

synapsesocial.com/papers/6996a82decb39a600b3ee941https://doi.org/10.3390/ijms27041901
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