Structural and functional characterization of TgGSK3, a druggable kinase in Toxoplasma gondii

S Silvia Diaz-Martin C Christopher Swale V Valeria Bellini I Irina Dobrescu J Janine Wenker M Marie-Pierre Brenier-Pinchart L Laurence Braun A Alwéna Tollec C Charlotte Corrao Y Yohann Couté (Biosciences et Bioingénierie pour la Santé, Université Grenoble Alpes, INSERM, Commissariat à l'énergie atomique et aux énergies alternatives, CNRS, CEA, FR2048) C Caroline Mas F Fabrice Laurent M Matthew Bowler M Mohamed-Ali Hakimi A Alexandre Bougdour

Abstract

Abstract Toxoplasma gondii and Cryptosporidium species are apicomplexan parasites of significant medical and veterinary importance. Although current therapeutic options for toxoplasmosis and cryptosporidiosis demonstrate notable efficacy, their clinical efficacy is often limited by suboptimal efficacy and frequent adverse effects. Moreover, therapeutic alternatives remain limited or nonexistent, particularly for cryptosporidiosis, for which nitazoxanide is currently the only approved medication to treat diarrhea in adults and children older than 1 year of age. To identify alternative therapeutic options for addressing these health challenges, we performed a phenotypic screening of an FDA-approved drug repurposing library against Toxoplasma . This screening identifies LY2090314 as a potent inhibitor of T. gondii and Cryptosporidium growth in mammalian cells. Through a target deconvolution strategy combining forward genetics, transcriptome sequencing, and computational mutation analysis, we elucidate the parasiticidal mechanism of LY2090314 and demonstrate that Tg GSK3 kinase is its primary molecular target. We also report the first X-ray crystal structure of LY2090314 bound to Tg GSK3, resolved at 2.1 Å, which reveals an interaction mode characteristic of type I ATP-competitive inhibitors. Furthermore, interactome analysis uncovers functional connections between Tg GSK3 and key cytoskeletal and signaling regulators, providing insights into compound’s effects. Collectively, these findings validate Tg GSK3 as a promising therapeutic target for toxoplasmosis and offer mechanistic insights into apicomplexan GSK3 biology.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 05, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

S

Silvia Diaz-Martin

C

Christopher Swale

V

Valeria Bellini

I

Irina Dobrescu

J

Janine Wenker

M

Marie-Pierre Brenier-Pinchart

L

Laurence Braun

A

Alwéna Tollec

C

Charlotte Corrao

Y

Yohann Couté

Biosciences et Bioingénierie pour la Santé, Université Grenoble Alpes, INSERM, Commissariat à l'énergie atomique et aux énergies alternatives, CNRS, CEA, FR2048

C

Caroline Mas

F

Fabrice Laurent

M

Matthew Bowler

M

Mohamed-Ali Hakimi

A

Alexandre Bougdour