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| Title | Orally available designed miniproteins inhibit enterotoxigenic Bacteroides fragilis pathology by blocking toxin receptor binding. |
|---|---|
| Journal, issue, pages | Biorxiv, Year 2026 |
| Publish date | Jun 17, 2026 (structure data deposition date) |
Authors | Srinivas, P. / Adebomi, V. / Markiewicz, S.M. / Wang, K. / Chac, D. / Lindenauer, K. / Huber, N. / Tao, Z. / Luong, P. / Rettie, S.A. ...Srinivas, P. / Adebomi, V. / Markiewicz, S.M. / Wang, K. / Chac, D. / Lindenauer, K. / Huber, N. / Tao, Z. / Luong, P. / Rettie, S.A. / Smith, M.W. / Bera, A.K. / Kang, A. / Nguyen, H. / Schneider, M. / Wang, Y. / Peterson, S.B. / Dong, M. / Weil, A.A. / Bhardwaj, G. / Mougous, J.D. |
External links | Biorxiv / PubMed:42395444 |
| Methods | X-ray diffraction |
| Resolution | 2 - 2.55 Å |
| Structure data | ![]() PDB-36lx: ![]() PDB-36ly: ![]() PDB-36mb: |
| Chemicals | ![]() ChemComp-HOH: ![]() ChemComp-SO4: ![]() ChemComp-PRO: |
| Source |
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Keywords | APOPTOSIS / De novo design / deep learning / minibinder / Bacteroides fragilis toxin / receptor / pathology |
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