Evolutionary Remodeling of Ubiquinone Biosynthesis in Toxoplasma gondii Reveals an Essential Bi-functional Monooxygenase
Baierna, B.; Rahman, T.; Latimer, S.; Basset, G. J.; Moreno, S. N. J.
Show abstract
Apicomplexan parasites like Toxoplasma gondii harbor a highly divergent mitochondrial proteome, much of which remains uncharacterized despite its essentiality for parasite survival. One such critical pathway is ubiquinone (UQ) biosynthesis. Here, we characterize the UQ synthesis machinery in T. gondii and show that conserved enzymes, TgCoq3 and TgCoq5, are essential for growth and mitochondrial function, forming a multi-protein complex. Using proximity labeling and subcellular fractionation, a strategy suited for detecting proteins of low abundance, we identify TgCoqFAD, a unique FAD-dependent monooxygenase required for UQ synthesis. Unlike canonical eukaryotic systems that employ multiple monooxygenases to modify specific carbons on the UQ aromatic ring, TgCoqFAD catalyzes two distinct hydroxylation steps, an activity not previously reported in eukaryotes. Molecular docking and chemical screening identified TgCoqFAD inhibitors that impair tachyzoite growth and bradyzoite viability. These findings reveal a streamlined and divergent UQ biosynthesis pathway in apicomplexans and establish TgCoqFAD as a promising antiparasitic target.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- A divergent cyclin/cyclin-dependent kinase complex controls the atypical replication of Plasmodium berghei during gametogony and parasite transmission. 95%
- Critical Role for Isoprenoids in Apicoplast Biogenesis by Malaria Parasites 95%
- ZFT is the major iron and zinc transporter in Toxoplasma gondii 95%
Similar papers in this journal
- The Clp System in Malaria Parasites Degrades Essential Substrates to Regulate Plastid Biogenesis 96%
- Native structure of the RhopH complex, a key determinant of malaria parasite nutrient acquisition 95%
- Ancient MAPK ERK7 is regulated by an unusual inhibitory scaffold required for Toxoplasma apical complex biogenesis 95%
Similar papers in this journal
- Lysosomal control of proteostasis and reproductive capacity by conserved LMD-3 protein in C. elegans 95%
- GABARAP membrane conjugation sequesters the FLCN-FNIP tumor suppressor complex to activate TFEB and lysosomal biogenesis 94%
- A parental transcriptional response to microsporidia infection induces inherited immunity in offspring 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.