bioRxiv · 10.1101/2025.10.17.683077
Targeting the host factor HGS-viral membrane protein interaction in coronavirus infection
Abstract
While current antivirals primarily target viral proteins, host-directed strategies remain underexplored. Here, we performed a genome-wide CRISPRi screening to identify the host protein, Hepatocyte Growth Factor-Regulated Tyrosine Kinase Substrate (HGS), as essential for the pan-coronaviruses infection both in vitro and in vivo. Mechanistically, HGS directly interacts with the viral membrane (M) protein, facilitating its trafficking to the ER-Golgi intermediate compartment (ERGIC) for virion assembly. Conversely, HGS deficiency caused M retention in the ER, blocking assembly. Leveraging this interaction, we designed M-derived peptides and screened over 5,000 FDA-approved drugs, identifying riboflavin tetrabutyrate (RTB). Both the peptides and RTB bind HGS and disrupt its interaction with the M protein, leading to M retention in the ER and subsequent blockade of virion assembly. These agents demonstrated broad anti-pan-coronavirus activity in vitro and in vivo. Collectively, our findings establish HGS as a druggable host target and identify RTB as a promising broad-spectrum antiviral candidate.
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Long, X., Chen, R., Bai, R., Tian, B., Cao, Y., Chen, K., Li, F., Wang, Y., Tang, Y., Yang, Q., Ma, L., Wang, F., Zhou, M., Qiu, X., Lu, Y., Zheng, J., Zhou, P., Chen, X., Liu, Q., Wei, X., Shi, Y., Xue, Y., Zhao, J., Ji, W., Hu, L., Shang, J., Xu, T., Li, Z.. 2025-10-17. Targeting the host factor HGS-viral membrane protein interaction in coronavirus infection. https://doi.org/10.1101/2025.10.17.683077
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