ArticlePLoS neglected tropical diseases2019
The repositioning of epigenetic probes/inhibitors identifies new anti-schistosomal lead compounds and chemotherapeutic targets.
Article in PLoS neglected tropical diseases, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
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Who cites it
21 citing papers in PubMed, 38 citations in OpenAlex.
- Chemical inhibition of α-mannosidase inFrontiers in parasitology · 2026Article
- Loss of vitamin C biosynthesis protects from the pathology of a parasitic infection.Proceedings of the National Academy of Sciences of the United States of America · 2025Article
- Use of P450 Enzymes for Late-Stage Functionalization in Drug Discovery.Journal of medicinal chemistry · 2025Article
- Predictive biomarkers for post-neonatal necrotizing enterocolitis intestinal stenosis: Role of JMJD3, CRP, and PCT.Biomolecules & biomedicine · 2025Article
- Quantum-Mechanically Refined, Dynamics-Coupled, and AI-Augmented Elucidation of Epigenetic Inhibition: An In Silico Paradigm Targeting HDAC8 ofJournal of tropical medicine · 2025Article
- Schistosomicidal effects of histone acetyltransferase inhibitors against Schistosoma japonicum juveniles and adult worms in vitro.PLoS neglected tropical diseases · 2024Article
- Small Molecule Ligands of the BET-like Bromodomain,Journal of medicinal chemistry · 2023Article
- Using ChEMBL to Complement Schistosome Drug Discovery.Pharmaceutics · 2023Article
- Multivariate chemogenomic screening prioritizes new macrofilaricidal leads.Communications biology · 2023Article
- Chemical modulation ofWellcome open research · 2023Article
- Anti-schistosomal activities of quinoxaline-containing compounds: From hit identification to lead optimisation.European journal of medicinal chemistry · 2021Article
- Novel insights into SMYD2 and SMYD3 inhibitors: from potential anti-tumoural therapy to a variety of new applications.Molecular biology reports · 2021Review
- Structural Requirements for Dihydrobenzoxazepinone Anthelmintics: Actions against Medically Important and Model Parasites:ACS infectious diseases · 2021Article
- Epigenetic Markers Associated with Schistosomiasis.Helminthologia · 2021Article
- Schistosomiasis Drug Discovery in the Era of Automation and Artificial Intelligence.Frontiers in immunology · 2021Review
- Long non-coding RNA levels can be modulated by 5-azacytidine in Schistosoma mansoni.Scientific reports · 2020Article
- Quorum sensing N-Acyl homoserine lactones are a new class of anti-schistosomal.PLoS neglected tropical diseases · 2020Article
- Large-scale RNAi screening uncovers therapeutic targets in the parasiteScience (New York, N.Y.) · 2020Article
- Identification of annotated bioactive molecules that impair motility of the blood fluke Schistosoma mansoni.International journal for parasitology. Drugs and drug resistance · 2020Article
- The antischistosomal potential of GSK-J4, an H3K27 demethylase inhibitor: insights from molecular modeling, transcriptomics and in vitro assays.Parasites & vectors · 2020Article
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Authors and funding
10 authors at 2 institutions in 1 country.
Funding
Abstract
backgroundPraziquantel represents the frontline chemotherapy used to treat schistosomiasis, a neglected tropical disease (NTD) caused by infection with macro-parasitic blood fluke schistosomes. While this drug is safe, its inability to kill all schistosome lifecycle stages within the human host often requires repeat treatments. This limitation, amongst others, has led to the search for novel anti-schistosome replacement or combinatorial chemotherapies. Here, we describe a repositioning strategy to assess the anthelmintic activity of epigenetic probes/inhibitors obtained from the Structural Genomics Consortium. METHODOLOGY/PRINCIPLE
findingsThirty-seven epigenetic probes/inhibitors targeting histone readers, writers and erasers were initially screened against Schistosoma mansoni schistosomula using the high-throughput Roboworm platform. At 10 μM, 14 of these 37 compounds (38%) negatively affected schistosomula motility and phenotype after 72 hours of continuous co-incubation. Subsequent dose-response titrations against schistosomula and adult worms revealed epigenetic probes targeting one reader (NVS-CECR2-1), one writer (LLY-507 and BAY-598) and one eraser (GSK-J4) to be particularly active. As LLY-507/BAY-598 (SMYD2 histone methyltransferase inhibitors) and GSK-J4 (a JMJD3 histone demethylase inhibitor) regulate an epigenetic process (protein methylation) known to be critical for schistosome development, further characterisation of these compounds/putative targets was performed. RNA interference (RNAi) of one putative LLY-507/BAY-598 S. mansoni target (Smp_000700) in adult worms replicated the compound-mediated motility and egg production defects. Furthermore, H3K36me2, a known product catalysed by SMYD2 activity, was also reduced by LLY-507 (25%), BAY-598 (23%) and siSmp_000700 (15%) treatment of adult worms. Oviposition and packaging of vitelline cells into in vitro laid eggs was also significantly affected by GSK-J4 (putative cell permeable prodrug inhibitor of Smp_034000), but not by the related structural analogue GSK-J1 (cell impermeable inhibitor). CONCLUSION/SIGNIFICANCE: Collectively, these results provide further support for the development of next-generation drugs targeting schistosome epigenetic pathway components. In particular, the progression of histone methylation/demethylation modulators presents a tractable strategy for anti-schistosomal control.
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