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Multiple unbiased approaches identify oxidosqualene cyclase as the molecular target of a promising anti-leishmanial. | LitMetric

AI Article Synopsis

  • A phenotypic screening process uncovered a benzothiophene compound that demonstrates effectiveness against Leishmania donovani, responsible for visceral leishmaniasis.
  • The enzyme oxidosqualene cyclase (OSC), a crucial player in sterol biosynthesis, was identified as the primary target for this compound, and increased OSC gene expression was linked to resistance against it.
  • Experimental analyses showed that treatment with the compound led to substrate accumulation and product depletion, supporting that it directly binds to OSC and highlighting potential strategies for improving its anti-leishmanial potency.

Article Abstract

Phenotypic screening identified a benzothiophene compound with activity against Leishmania donovani, the causative agent of visceral leishmaniasis. Using multiple orthogonal approaches, oxidosqualene cyclase (OSC), a key enzyme of sterol biosynthesis, was identified as the target of this racemic compound and its enantiomers. Whole genome sequencing and screening of a genome-wide overexpression library confirmed that OSC gene amplification is associated with resistance to compound 1. Introduction of an ectopic copy of the OSC gene into wild-type cells reduced susceptibility to these compounds confirming the role of this enzyme in resistance. Biochemical analyses demonstrated the accumulation of the substrate of OSC and depletion of its product in compound (S)-1-treated-promastigotes and cell-free membrane preparations, respectively. Thermal proteome profiling confirmed that compound (S)-1 binds directly to OSC. Finally, modeling and docking studies identified key interactions between compound (S)-1 and the LdOSC active site. Strategies to improve the potency for this promising anti-leishmanial are proposed.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153249PMC
http://dx.doi.org/10.1016/j.chembiol.2021.02.008DOI Listing

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