Fan, S.; Wei, X.; Lv, R.; Wang, C.; Tang, M. et al. (2025). Crystal structure of serine hydroxymethyltransferase 1. Protein Data Bank: 8xnd. |
CMCF-ID |
PDB Deposition |
Health |
Fan, S.; Wei, X.; Lv, R.; Wang, C.; Tang, M. et al. (2025). The Crystal Structure of Glucosyltransferase TcdB from Clostridioides difficile. Protein Data Bank: 8y2l. |
CMCF-ID |
PDB Deposition |
Health |
Ezekiel, S.; Park, J. (2025). Structure of mutant human geranylgeranyl pyrophosphate synthase (Y246D-C247L) in complex with isopentenyl pyrophosphate. Protein Data Bank: 9csl. |
CMCF-ID |
PDB Deposition |
Health |
Delker, S.L.; Edwards, T.E.; Abendroth, J. (2025). Co-crystal structure of circularly permuted human taspase-1 bound to ligand SMDC1014689 1-(ethenesulfonyl)-4-{[3-fluoro-4-(trifluoromethoxy)phenyl]methyl}piperazine. Protein Data Bank: 9d03. |
CMCF-ID |
PDB Deposition |
Agriculture |
Delker, S.L.; Edwards, T.E.; Abendroth, J. (2025). Co-crystal structure of circularly permuted human taspase-1 bound to ligand SMDC1014883 (2R)-4-(ethenesulfonyl)-1-{[3-fluoro-4-(trifluoromethoxy)phenyl]methyl}-2-[(prop-2-yn-1-yloxy)methyl]piperazine. Protein Data Bank: 9d02. |
CMCF-ID |
PDB Deposition |
Agriculture |
Costanzi, E.; Thomsen, M. (2025). The crystal structure of FAN1 Nuclease bound to 5' phosphorylated p(dG)/3'(dT-dT-dT-dT) double flap DNA. Protein Data Bank: 8s5a. |
CMCF-ID |
PDB Deposition |
Health |
Chen, A.; Tomlinson, A.C.A.; Bieder, R.; Knox, J.E.; Yano, J.K. et al. (2025). Tri-complex of Daraxonrasib (RMC-6236), KRAS G12C, and CypA. Protein Data Bank: 9bga. |
CMCF-ID |
PDB Deposition |
Health |
Tran, Norman; Redzic, Jasmina S.; Eisenmesser, Elan Z.; Holyoak, Todd (2025). The structure of the Gemella haemolysans M26 IgA1 protease trypsin-like domain. Acta Crystallographica Section F:Structural Biology Communications 81(4) . 10.1107/s2053230x25001219. [PDB: 9ect] |
CMCF-BM |
Peer-Reviewed Article |
Health |
Tran, Norman; Frenette, Aaron; Holyoak, Todd (2025). Structure of the
Thomasclavelia ramosa
immunoglobulin A protease reveals a modular and minimizable architecture distinct from other immunoglobulin A proteases. Proceedings of the National Academy of Sciences of the United States of America 122(35) . 10.1073/pnas.2503549122. [PDB: 9ekk, 9ekm, 9ekn] |
CMCF-BM |
Peer-Reviewed Article |
Agriculture |
Throner, Scott; Feng, Tianshu; Andersen, Jannik N.; Bandi, Madhavi; Engel, Justin L. et al. (2025). Discovery of TNG-6132, a potent, selective, and orally bioavailable USP1 inhibitor. Bioorganic and Medicinal Chemistry Letters 124, 130262. 10.1016/j.bmcl.2025.130262. [PDB: 9n9y] |
CMCF-BM |
Peer-Reviewed Article |
Health |
Lee, Eunjeong; Tran, Norman; Redzic, Jasmina S.; Singh, Harmanpreet; Alamillo, Lorena et al. (2025). Identifying and controlling inactive and active conformations of a serine protease. Science Advances 11(15) . 10.1126/sciadv.adu7447. [PDB: 9bsh, 9bsm] |
CMCF-BM |
Peer-Reviewed Article |
Health |
Krishnan, Shreya S; Shen, Yao; O’Hagan, Treasa B; Matthews, Lindsay A; Weerasinghe, Nuwani W et al. (2025). Asymmetric loading of TnsE regulates Tn7 targeting of DNA replication structures. Nucleic Acids Research 53(11) . 10.1093/nar/gkaf472. [PDB: 9d5l] |
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 |
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 |
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 |