bioRxiv · 10.1101/2025.10.12.681920
High-Throughput De Novo Protein Design Yields Novel Immunomodulatory Agonists
Abstract
Cytokines regulate cell behavior by bringing together specific receptor subunits to trigger downstream signaling. Designed molecules that bring together non-natural receptor pairs could have novel signaling responses and cell specificities. We present a high-throughput de-novo design approach to create novel cytokines by generating and fusing pairs of computationally designed binders. By combining 33 designed receptor-binding domains, we generated over a thousand potential de novo designed "Novokines", of which 75 activated pSTAT signaling in peripheral blood mononuclear cells. We characterized 18 of these, including new pairings of established common receptors, cross-family pairings such as TrkA-{gamma}common, and a series of pairings with interferon receptor-1 (IFNAR1), revealing that IFNAR1 can function as a versatile common receptor similar to {gamma}common or {beta}common. We identify novokines that drive monocyte proliferation, T cell survival and CD4+ T cell-specific proliferation. Our framework provides a blueprint for expanding the understanding of cytokine signaling and generating novel therapeutic proteins.
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Abedi, M., Exposit, M., Coventry, B., Mathew, D., Jain, S., Krishnakumar, A., Goreshnik, I., Gray-Gaillard, S., Lunn-Halbert, M., Yu, T.-Y., Glögl, M., Mitchell, U., Keshri, R., Chun, J. H., Ruohola-Baker, H., Wherry, E. J., Baker, D.. 2025-10-13. High-Throughput De Novo Protein Design Yields Novel Immunomodulatory Agonists. https://doi.org/10.1101/2025.10.12.681920
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