A drug repurposing approach reveals targetable epigenetic pathways in Plasmodium vivax hypnozoites.

药物再利用方法揭示了间日疟原虫休眠子中可靶向的表观遗传通路

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作者:Maher Steven P, Bakowski Malina A, Vantaux Amélie, Flannery Erika L, Andolina Chiara, Gupta Mohit, Antonova-Koch Yevgeniya, Argomaniz Magdalena, Cabrera-Mora Monica, Campo Brice, Chao Alexander T, Chatterjee Arnab K, Cheng Wayne T, Chuenchob Vorada, Cooper Caitlin A, Cottier Karissa, Galinski Mary R, Harupa-Chung Anke, Ji Hana, Joseph Sean B, Lenz Todd, Lonardi Stefano, Matheson Jessica, Mikolajczak Sebastian A, Moeller Timothy, Orban Agnes, Padín-Irizarry Vivian, Pan Kastin, Péneau Julie, Prudhomme Jacques, Roesch Camille, Ruberto Anthony, Sabnis Saniya S, Saney Celia L, Sattabongkot Jetsumon, Sereshki Saleh, Suriyakan Sangrawee, Ubalee Ratawan, Wang Yinsheng, Wasisakun Praphan, Yin Jiekai, Popovici Jean, McNamara Case W, Joyner Chester, Nosten François H, Witkowski Benoît, Le Roch Karine G, Kyle Dennis E
Radical cure of Plasmodium vivax malaria must include elimination of quiescent 'hypnozoite' forms in the liver; however, the only FDA-approved treatments are contraindicated in many vulnerable populations. To identify new drugs and drug targets for hypnozoites, we screened the Repurposing, Focused Rescue, and Accelerated Medchem (ReFRAME) library and a collection of epigenetic inhibitors against P. vivax liver stages. From both libraries, we identified inhibitors targeting epigenetics pathways as selectively active against P. vivax and P. cynomolgi hypnozoites. These include DNA methyltransferase inhibitors as well as several inhibitors targeting histone post-translational modifications. Immunofluorescence staining of Plasmodium liver forms showed strong nuclear 5-methylcystosine signal, indicating liver stage parasite DNA is methylated. Using bisulfite sequencing, we mapped genomic DNA methylation in sporozoites, revealing DNA methylation signals in most coding genes. We also demonstrated that methylation level in proximal promoter regions as well as in the first exon of the genes may affect, at least partially, gene expression in P. vivax. The importance of selective inhibitors targeting epigenetic features on hypnozoites was validated using MMV019721, an acetyl-CoA synthetase inhibitor that affects histone acetylation and was previously reported as active against P. falciparum blood stages. In summary, our data indicate that several epigenetic mechanisms are likely modulating hypnozoite formation or persistence and provide an avenue for the discovery and development of improved radical cure antimalarials.

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