| Barghash, Marim M.; Mabanglo, Mark F.; Hoff, Samuel E.; Brozdnychenko, Dmytro; Wong, Keith S. et al. (2025). Small molecule dysregulation of ClpP activity via bidirectional allosteric pathways. Structure . 10.1016/j.str.2025.07.013. [PDB: 9mjp] |
CMCF-BM |
Peer-Reviewed Article |
Health |
| Chen, P.; Lamer, T.; Vederas, J.C.; Lemieux, M.J. (2025). Crystal structures of a cyanobacterial DAP epimerase bound to D,L-alpha-methyl DAP. Protein Data Bank: 9mrv. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Chen, P.; Lamer, T.; Vederas, J.C.; Lemieux, M.J. (2025). Crystal structures of a cyanobacterial DAP epimerase bound to either D,L-aziDAP or D,L-alpha-methyl DAP. Protein Data Bank: 9mro. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Colussi, Danielle M.; Grainger, Ryan; Noble, Megan; Lake, Taylor; Junop, Murray et al. (2025). Disrupting the network of co-evolving amino terminal domain residues relieves mitochondrial calcium uptake inhibition by MCUb. Computational and Structural Biotechnology Journal 27, 190-213. 10.1016/j.csbj.2024.12.007. [PDB: 8urg] |
CMCF-BM |
Peer-Reviewed Article |
Health |
| Cottrell, Kevin M.; Briggs, Kimberly J.; Tsai, Alice; Tonini, Matthew R.; Whittington, Douglas A. et al. (2025). Discovery of TNG462: A Highly Potent and Selective MTA-Cooperative PRMT5 Inhibitor to Target Cancers with MTAP Deletion. Journal of Medicinal Chemistry 68(5) , 5097-5119. 10.1021/acs.jmedchem.4c03067. [PDB: 9n3o] |
CMCF-BM |
Peer-Reviewed Article |
Health |
| Deschenes, Natalie M; Pérez-Vargas, Jimena; Zhong, Zoe; Thomas, Merrilee; Kenward, Calem et al. (2025). Functional and Structural Characterization of Treatment-Emergent Nirmatrelvir Resistance Mutations at Low Frequencies in the Main Protease (Mpro) Reveals a Unique Evolutionary Route for SARS-CoV-2 to Gain Resistance. Journal of Infectious Diseases . 10.1093/infdis/jiaf294. [PDB: 9pfh, 9pfi] |
CMCF-BM |
Peer-Reviewed Article |
Health |
| Di Lello, Paola; Wells, Marta M.; Davis, Ben; Daniels, Zoe; Garner, Thomas P. et al. (2026). Targeting PTPN22 at Nonorthosteric Binding Sites─A Fragment Approach. ACS Omega . 10.1021/acsomega.5c11028. [PDB: 9yg0, 9yg1, 9yg3] |
CMCF-BM |
Peer-Reviewed Article |
Health |
| Di Lello, P.; Wells, M.M. (2026). Targeting PTPN22 at non-orthosteric binding sites - a fragment approach. Protein Data Bank: 9yg3. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Di Lello, P.; Wells, M.M. (2026). Targeting PTPN22 at non-orthosteric binding sites - a fragment approach. Protein Data Bank: 9yg1. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Di Lello, P.; Wells, M.M. (2026). Targeting PTPN22 at non-orthosteric binding sites - a fragment approach. Protein Data Bank: 9yg0. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Dodda, Leela S.; Campos, Sebastien; Ciccone, David; Carreiro, Samantha; Leit, Silvana et al. (2025). Knowledge and Structure-Based Drug Design of 15-PGDH Inhibitors. Journal of Medicinal Chemistry 68(17) , 18436-18462. 10.1021/acs.jmedchem.5c01231. [PDB: 9pfl] |
CMCF-BM |
Peer-Reviewed Article |
Materials |
| Ereno-Orbea, J.; Sicard, T.; Julien, J.-P. (2025). Crystal structure of human CD22 Ig domains 1-3 in complex with modified sialoside 1B. Protein Data Bank: 9rob. |
CMCF-BM |
PDB Deposition |
Agriculture |
| Ereño-Orbea, June; Pang, Lijuan; Sicard, Taylor; Nycholat, Corwin; Cui, Hong et al. (2025). Molecular Insights into the Engagement of High-Affinity Sialylated Ligands to Human CD22. JACS Au . 10.1021/jacsau.5c01013. [PDB: 9rm3, 9ro7, 9rob] |
CMCF-BM, CMCF-ID |
Peer-Reviewed Article |
Health |
| Forrester, Taylor J. B.; Lin, Sicheng; Lowary, Todd L.; Kimber, Matthew S. (2025). WrtF from
Rhizobium tropici
CIAT 899 is a GT-A fold fucosyltransferase that binds its donor nonproductively. Proceedings of the National Academy of Sciences of the United States of America 122(44) . 10.1073/pnas.2512460122. [PDB: 9omh, 9omi] |
CMCF-BM, CMCF-ID |
Peer-Reviewed Article |
Agriculture |
| Forrester, T.J.B.; Kimber, M.S. (2025). WrtF fucosyltransferase - GDP-2-deoxy-2-fluoro-beta-L-fucose. Protein Data Bank: 9omn. |
CMCF-BM |
PDB Deposition |
Agriculture |