Enterovirus 71 Mediates Cell Cycle Arrest in S Phase Through Non-structural Protein 3D
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Many viruses disrupt the host cell cycle to facilitate their own growth. We assessed the mechanism and function of enterovirus 71 (EV71), a primary causative agent for recent hand, foot, and mouth disease outbreaks, in manipulating cell cycle progression. Our results suggest that EV71 infection induces S-phase arrest in diverse cell types by preventing the cell cycle transition from the S phase into the G2/M phase. Similar results were observed for an alternate picornavirus, Coxsackievirus A16. Synchronization in S phase, but not G0/G1 phase or G2/M phase, promotes viral replication. Consistent with its ability to arrest cells in S phase, the expression of cyclin A2, CDK 2, cyclin E1, and cyclin B1 was regulated by EV71 through increasing transcription of cyclin E1, promoting proteasome-mediated degradation of cyclin A2 and regulating the phosphorylation of CDK 2. Finally, a non-structural protein of EV71, the RNA-dependent RNA polymerase 3D, was demonstrated to mediate S-phase cell cycle arrest. These findings suggest that EV71 induces S-phase cell cycle arrest in infected cells via non-structural protein 3D, which may provide favorable conditions for virus production.
Insight into the Life Cycle of Enterovirus-A71.
Liu Q, Long J Viruses. 2025; 17(2).
PMID: 40006936 PMC: 11861800. DOI: 10.3390/v17020181.
Chang X, Guo Y, Zhang Q, Zheng X, Cui X, Hu J J Virol. 2024; 98(6):e0026824.
PMID: 38775480 PMC: 11237669. DOI: 10.1128/jvi.00268-24.
Multiple functions of the nonstructural protein 3D in picornavirus infection.
Xu C, Wang M, Cheng A, Yang Q, Huang J, Ou X Front Immunol. 2024; 15:1365521.
PMID: 38629064 PMC: 11018997. DOI: 10.3389/fimmu.2024.1365521.
Duck hepatitis A virus type 1 mediates cell cycle arrest in the S phase.
Liu Y, Li Y, Wang M, Cheng A, Ou X, Mao S Virol J. 2022; 19(1):111.
PMID: 35761382 PMC: 9235186. DOI: 10.1186/s12985-022-01839-6.
Gao X, Qiu Y, Gao L, Zhang L, Li X, Liu Y Food Chem X. 2022; 13:100244.
PMID: 35499022 PMC: 9040005. DOI: 10.1016/j.fochx.2022.100244.