Vemurafenib Inhibits Enterovirus A71 Genome Replication and Virus Assembly

Author:

Hu Bodan,Chik Kenn Ka-Heng,Chan Jasper Fuk-WooORCID,Cai Jian-PiaoORCID,Cao Hehe,Tsang Jessica Oi-Ling,Zou Zijiao,Hung Yin-Po,Tang KaimingORCID,Jia Lilong,Luo Cuiting,Yin Feifei,Ye Zi-Wei,Chu HinORCID,Yeung Man-Lung,Yuan ShuofengORCID

Abstract

Enterovirus A71 (EV-A71) infection is a major cause of hand, foot, and mouth disease (HFMD), which may be occasionally associated with severe neurological complications. There is currently a lack of treatment options for EV-A71 infection. The Raf-MEK-ERK signaling pathway, in addition to its critical importance in the regulation of cell growth, differentiation, and survival, has been shown to be essential for virus replication. In this study, we investigated the anti-EV-A71 activity of vemurafenib, a clinically approved B-Raf inhibitor used in the treatment of late-stage melanoma. Vemurafenib exhibits potent anti-EV-A71 effect in cytopathic effect inhibition and viral load reduction assays, with half maximal effective concentration (EC50) at nanomolar concentrations. Mechanistically, vemurafenib interrupts both EV-A71 genome replication and assembly. These findings expand the list of potential antiviral candidates of anti-EV-A71 therapeutics.

Funder

the Health and Medical Research Fund, the Food and Health Bureau, The Government of the Hong Kong Special Administrative Region, etc

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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