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. 2025 Mar 20;188(6):1681-1692.e17.
doi: 10.1016/j.cell.2024.12.035. Epub 2025 Jan 23.

Structure-guided discovery of viral proteins that inhibit host immunity

Affiliations

Structure-guided discovery of viral proteins that inhibit host immunity

Erez Yirmiya et al. Cell. .

Abstract

Viruses encode proteins that inhibit host defenses, but sifting through the millions of available viral sequences for immune-modulatory proteins has been so far impractical. Here, we develop a process to systematically screen virus-encoded proteins for inhibitors that physically bind host immune proteins. Focusing on Thoeris and CBASS, bacterial defense systems that are the ancestors of eukaryotic Toll/interleukin-1 receptor (TIR) and cyclic GMP-AMP synthase (cGAS) immunity, we discover seven families of Thoeris and CBASS inhibitors, encompassing thousands of genes widespread in phages. Verified inhibitors exhibit extensive physical interactions with the respective immune protein counterpart, with all inhibitors blocking the active site of the immune protein. Remarkably, a phage-encoded inhibitor of bacterial TIR proteins can bind and inhibit distantly related human and plant immune TIRs, and a phage-derived inhibitor of bacterial cGAS-like enzymes can inhibit the human cGAS. Our results demonstrate that phages are a reservoir for immune-modulatory proteins capable of inhibiting bacterial, animal, and plant immunity.

Keywords: CBASS; Thoeris; anti-defense; bacterial defense systems; bacteriophages; phages.

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Conflict of interest statement

Declaration of interests R.S. is a scientific co-founder of and adviser for BiomX and Ecophage. A patent application titled “a method for discovery of proteins that inhibit immunity” was submitted in parallel with the manuscript.

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