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Conserved Filovirus Proteins as Targets of Broad-Spectrum Antivirals

Scotti, M.; Kelestemur, E.; Martin, H.-J.; Novy, B.; Melo-Filho, C.; Barros, R.; Herrera-Acevedo, C.; Tropsha, A.; Muratov, E.

2025-09-28 bioinformatics
10.1101/2025.09.26.678902 bioRxiv
Show abstract

Filoviruses are enveloped, non-segmented, negative-strand RNA viruses belonging to the Filoviridae family, which includes five genera: Ebolavirus, Marburgvirus, Cuevavirus, Striavirus, and Thamnovirus. Members of this family cause severe and, often, fatal hemorrhagic fevers in humans and non-human primates, with high mortality rates. To date, only two filoviruses, Ebola virus (EBOV) and Marburg virus (MARV), are known to infect humans and are listed as priority pathogens by the World Health Organization due to their potential for re-emergence and the current lack of effective vaccines and antiviral treatments. In this study, we identify and characterize conserved binding sites within key filoviral proteins to support the development of broad-spectrum, direct-acting antiviral agents. We validated the significance of these conserved regions for drug discovery using existing experimental data. Our analysis revealed notably high sequence similarity among proteins from filoviruses capable of infecting humans (EBOV, TAFV, BDBV, SUDV, MARV, and RAVV) compared to those from non-zoonotic species, with the highest conservation observed in the L and VP40 proteins--both critical for viral genome transcription and replication. Furthermore, we compiled and analyzed available experimental data on known antiviral compounds targeting these proteins, identifying several agents with cross-filovirus activity, including Galidesivir, Remdesivir, and Favipiravir. The integrated approach described here--combining sequence and structural conservation analysis with chemical structure and antiviral activity data--demonstrates a strategy that could be extended to the development of broad-spectrum therapeutics across multiple viral families. HIGHLIGHTSO_LIConserved filovirus sites targeted for broad-spectrum antivirals. C_LIO_LIStructural modeling identifies key antiviral binding sites. C_LIO_LIViral internal proteins are crucial targets for inhibition. C_LIO_LIRemdesivir validates conserved polymerase as a druggable target. C_LIO_LIStudy highlights need for pan-filovirus drug screening C_LI TOC GRAPHIC O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=102 SRC="FIGDIR/small/678902v1_ufig1.gif" ALT="Figure 1"> View larger version (54K): org.highwire.dtl.DTLVardef@4fd25eorg.highwire.dtl.DTLVardef@7c4076org.highwire.dtl.DTLVardef@16c0961org.highwire.dtl.DTLVardef@1dbd8a0_HPS_FORMAT_FIGEXP M_FIG C_FIG

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