bioRxiv · 10.64898/2025.12.13.693970
Efagins evolved independently to target the enterococcal cell wall
Abstract
Enterococci are major causes of multidrug-resistant infections, and antimicrobials with fundamentally new mechanisms of action are urgently needed. We identify a new class of antibacterial agents, termed efagins, which are chromosomally encoded, phage-related nanomachines that recognize cell wall carbohydrate receptors and inhibit subsets of E. faecalis, E. faecium and other enterococci selectively--a key reason they evaded prior detection. Five natural variants with distinct targeting profiles were identified - four related by sequence divergence, while one appears to have arisen through recombination of the targeting domain, likely from a phage donor. Operons encoding the corresponding carbohydrate receptors are highly variable, accounting for targeting specificity. The efagin targeting domain can be engineered to reprogram them toward alternative receptors, providing a pathway for filling critical coverage gaps. These findings advance efagins as new selective antibacterials with promise for addressing infection and spread of multidrug-resistant enterococcal infection.
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Prichula, J., Manson, A. L., Smith, J. T., Karumidze, N., Richards, G., Mello, S. S., Czajkowski, A., Kaplan, M., Earl, A. M., Gilmore, M. S.. 2025-12-13. Efagins evolved independently to target the enterococcal cell wall. https://doi.org/10.64898/2025.12.13.693970
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