| Liu, Y.L.; Xiao, Q.; Shang, X.C. (2026). Crystal structure of the WRKY DNA-binding domain in complex with the W-box DNA motif. Protein Data Bank: 9m0k. |
CMCF-ID |
PDB Deposition |
Agriculture |
| kimani, S.; Dong, A.; Li, Y.; Seitova, A.; Mamai, A. et al. (2026). Crystal structure of the human DCAF1 WDR domain in complex with OICR-40102. Protein Data Bank: 9y4q. |
CMCF-ID |
PDB Deposition |
Agriculture |
| Ivanochko, D.; Semesi, A.; Julien, J.P. (2026). Tandem antigen chimera of Pfs230 and Pfs48/45 bound by potent mAbs. Protein Data Bank: 9n8n. |
CMCF-ID |
PDB Deposition |
Health |
| Govind, M.; Kimber, M.S. (2026). KrKA retaining Kdo transferase CMP complex. Protein Data Bank: 9yfx. |
CMCF-ID |
PDB Deposition |
Agriculture |
| Fong, J.K.; Cordeiro, R.L.; Van Petegem, F.; Brumer, H. (2026). Structure of glyoxal oxidase from Fusarium graminearum at 1.28 Angstroms resolution. Protein Data Bank: 9n3u. |
CMCF-ID |
PDB Deposition |
Health |
| Ereno-Orbea, J.; Sicard, T.; Julien, J.-P. (2026). Crystal structure of human CD22 Ig domains 1-3 in complex with modified sialoside 17. Protein Data Bank: 9rm3. |
CMCF-ID |
PDB Deposition |
Agriculture |
| 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 |
| Boraston, A.B.; Tingley, J.; Mihalynuk, L.; Abbott, D.W. (2026). Structure of a GH16_17 carrageenase from a metagenomic dataset.. Protein Data Bank: 9efl. |
CMCF-ID |
PDB Deposition |
Health |
| Roohallah Surki Aliabad, Saeed Sadeghpour, Pentti Karjalainen, Harishchandra Singh, Ehsan Ghassemali, Jukka Komi, Pasi Suikkanen, Vahid Javaheri (2026). Carbide-Mediated Austenite Formation and TRIP Activation in Medium-Mn Steel: An In-Situ Synchrotron X-Ray Study. In Kelvin Yu Xie; Zhiwei Peng; Mingming Zhang; Jian Li; Bowen Li; Sergio Neves Monteiro; Rajiv Soman; Jiann-Yang Hwang; Yunus Eren Kalay; Juan P. Escobedo-Diaz; John S. Carpenter; Shadia Ikhmayies; Eason Chen(Ed.), Characterization of Minerals, Metals, and Materials 2026: In-Situ Characterization Techniques. Springer. , 241 - 253 9783032135995. |
BXDS-WHE |
Book / Chapter |
Materials |
| Zsombor-Pindera, Joseph; Kazmierczak, Nathanael; Mirzoyan, Ruben; Aalto, Jonathan P.; Kochetov, Kirill et al. (2026). Evaluating the Role of Covalency in Spin Relaxation: An XAS Approach. Patent Number: 10.26434/chemrxiv-2026-jl6q0. |
BIOXAS, HXMA, REIXS, SGM, SXRMB |
Peer-Reviewed Article |
Materials |
| Zsombor-Pindera, Joseph; Kazmierczak, Nathanael; Mirzoyan, Ruben; Aalto, Jonathan P.; Kochetov, Kirill et al. (2026). Evaluating the Role of Covalency in Spin Relaxation: An XAS Approach. Patent Number: 10.26434/chemrxiv-2026-jl6q0. |
BIOXAS, HXMA, REIXS, SGM, SXRMB |
Peer-Reviewed Article |
Materials |
| Zsombor-Pindera, Joseph; Kazmierczak, Nathanael; Mirzoyan, Ruben; Aalto, Jonathan P.; Kochetov, Kirill et al. (2026). Evaluating the Role of Covalency in Spin Relaxation: An XAS Approach. Patent Number: 10.26434/chemrxiv-2026-jl6q0. |
BIOXAS, HXMA, REIXS, SGM, SXRMB |
Peer-Reviewed Article |
Materials |
| Zsombor-Pindera, Joseph; Kazmierczak, Nathanael; Mirzoyan, Ruben; Aalto, Jonathan P.; Kochetov, Kirill et al. (2026). Evaluating the Role of Covalency in Spin Relaxation: An XAS Approach. Patent Number: 10.26434/chemrxiv-2026-jl6q0. |
BIOXAS, HXMA, REIXS, SGM, SXRMB |
Peer-Reviewed Article |
Materials |