Fluoxetine targets an allosteric site in the enterovirus 2C AAA+ ATPase and stabilizes a ring-shaped hexameric complex

Publication date

2022-01-07

Authors

Hurdiss, Daniel LORCID 0000-0003-3834-5808ISNI 0000000476570907
El Kazzi, Priscila
Bauer, LisaISNI 000000050593220X
Papageorgiou, Nicolas
Ferron, François P.
Donselaar, TimISNI 0000000493058630
van Vliet, ArnoISNI 0000000492959883
Shamorkina, Tatiana MISNI 0000000492921228
Snijder, JoostISNI 0000000387416756
Canard, Bruno

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by_nc

Abstract

Enteroviruses are globally prevalent human pathogens responsible for many diseases. The nonstructural protein 2C is a AAA+ helicase and plays a key role in enterovirus replication. Drug repurposing screens identified 2C-targeting compounds such as fluoxetine and dibucaine, but how they inhibit 2C is unknown. Here, we present a crystal structure of the soluble and monomeric fragment of coxsackievirus B3 2C protein in complex with (S)-fluoxetine (SFX), revealing an allosteric binding site. To study the functional consequences of SFX binding, we engineered an adenosine triphosphatase (ATPase)-competent, hexameric 2C protein. Using this system, we show that SFX, dibucaine, HBB [2-(α-hydroxybenzyl)-benzimidazole], and guanidine hydrochloride inhibit 2C ATPase activity. Moreover, cryo-electron microscopy analysis demonstrated that SFX and dibucaine lock 2C in a defined hexameric state, rationalizing their mode of inhibition. Collectively, these results provide important insights into 2C inhibition and a robust engineering strategy for structural, functional, and drug-screening analysis of 2C proteins.

Keywords

General

Citation

Hurdiss, D L, El Kazzi, P, Bauer, L, Papageorgiou, N, Ferron, F P, Donselaar, T, Van Vliet, A L W, Shamorkina, T M, Snijder, J, Canard, B, Decroly, E, Brancale, A, Zeev-Ben-Mordehai, T, Förster, F, Van Kuppeveld, F J M & Coutard, B 2022, 'Fluoxetine targets an allosteric site in the enterovirus 2C AAA+ ATPase and stabilizes a ring-shaped hexameric complex', Science advances, vol. 8, no. 1, abj7615, pp. 1-12. https://doi.org/10.1126/sciadv.abj7615