An integrative host-directed drug discovery framework combining functional genomics and pharmacotranscriptomics is developed, providing a systematic and scalable strategy for discovering antivirals that are less susceptible to resistance and potentially applicable to other rapidly evolving pathogens.
Abstract
Summary Influenza A virus (IAV) remains a major threat to human and animal health, while the emergence of drug-resistant strains necessitates new antiviral strategies. Here, we developed an integrative host-directed drug discovery framework combining functional genomics and pharmacotranscriptomics. By aggregating published genome-wide screens, we assigned host genes functional scores reflecting their effects on IAV replication and used these scores to estimate the antiviral status of host cells. Screening nearly 20,000 drug-induced transcriptional signatures identified compounds that shift host gene expression toward an antiviral state. Among 54 selected hits, 18 showed anti-IAV activity. Notably, lithocholic acid and ALW-II-49-7 inhibited viral replication in vitro and protected mice from lethal infection in vivo. This host-targeted framework provides a systematic and scalable strategy for discovering antivirals that are less susceptible to resistance and potentially applicable to other rapidly evolving pathogens.
It is shown that integrating protein-protein interaction information derived from a protein language model boosts the discovery of vaccinia virus-host interactions, and proposes ICARus – a positive-unlabelled read-out refinement framework to achieve this.
Jacob Marcel Anter, Jason Mercer, A. Yakimovich· bioRxiv· 0 citations
A large-scale mining of the MetaVR database is presented to identify phages targeting human bacterial pathogens, establishing a large-scale framework for connecting human bacterial pathogens to phages and their lytic machinery, and translates large-scale viral genomic data into a resource for developing new therapeutic...
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A programmable RNA-targeting antiviral platform based on RfxCas13d is developed and its activity in avian cells is evaluated, establishing RfxCas13d as a versatile RNA-guided antiviral platform and providing a foundation for cross-strain influenza control through conserved RNA targeting.
Sudip Dhakal, Aaron J. Smith, Emiliana Weiss et al.· npj Antimicrobials and Resis...· 0 citations
Influenza A virus (IAV) remains a major threat to human and animal health, highlighting the need for efficient approaches to identify host factors and antivirals. Reporter viruses are critical tools for these efforts, but incorporating large reporter genes often compromises viral fitness and genetic stability. Here, we...
ABSTRACT Influenza A virus (IAV) is a major respiratory pathogen causing seasonal epidemics and pandemics, posing serious threats to public health and livestock. The high mutation rate of IAV leads to vaccine mismatches and drug-resistant variants, underscoring the need for novel antiviral strategies. This review exami...
Yu-Mei-Chen Yan, Zhijun Li, Haiyan He et al.· Virulence· 0 citations
This review examines the principles and applications of target-based antiviral drug development against human respiratory viruses, emphasizing the identification and exploitation of conserved viral and host targets.
S. K. Samrat, Gaurie Srivastava, Ran Zhang et al.· Pathogens· 0 citations
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