Publication Beamlines Strategic Pillar
Shurtleff, Valerie W.; Layton, Mark E.; Parish, Craig A.; Perkins, James J.; Schreier, John D. et al. (2024). Invention of MK-7845, a SARS-CoV-2 3CL Protease Inhibitor Employing a Novel Difluorinated Glutamine Mimic. Journal of Medicinal Chemistry . 10.1021/acs.jmedchem.3c02248. [PDB: 8ute] CMCF-BM Health
Tran, T.T.Q.; Pham, N.T.H.; Calmettes, C.; Doucet, N. (2024). Crystal structure of a resurrected ancestor (AncRNase) of the pancreatic-type RNases 2 and 3 sub-families. Protein Data Bank: 8g9a. CMCF-BM Agriculture
Wang, F.; Cheng, W.; Lv, Z.; Ju, C.; Bao, C. et al. (2024). The Crystal Structure of USP8 from Biortus.. Protein Data Bank: 8y9a. CMCF-BM Health
Wang, F.; Cheng, W.; Lv, Z.; Ju, C.; Wang, J. et al. (2024). The Crystal Structure of TGF beta R2 kinase domain from Biortus.. Protein Data Bank: 8ygz. CMCF-BM Health
Wang, F.; Cheng, W.; Lv, Z.; Meng, Q.; Xu, Y. et al. (2024). The Crystal Structure of NF-kB-inducing Kinase (NIK) from Biortus. Protein Data Bank: 8yhw. CMCF-BM Health
Wang, F.; Cheng, W.; Lv, Z.; Meng, Q.; Xu, Y. et al. (2024). The Crystal Structure of Tgf-Beta Type I Receptor (Alk5) from Biortus. Protein Data Bank: 8yhl. CMCF-BM Health
Xu, C.; Chung, I.Y.W.; Cygler, M. (2024). Crystal structure of legAS4 from Legionella pneumophila subsp. pneumophila with histone H3 (3-17)peptide. Protein Data Bank: 8sr6. CMCF-BM Health
Daniel-Ivad, Phillip (2024). Crystallographic and biochemical characterization of key steps in reductasporine and capuramycin biosynthesis. Supervisor: Ryan, Katherine S.. BC, Canada: University of British Columbia. http://hdl.handle.net/2429/87410. CMCF Health
Daniel-Ivad, Phillip; Ryan, Katherine S. (2024). Structure of methyltransferase RedM that forms the dimethylpyrrolinium of the bisindole reductasporine. Journal of Biological Chemistry 300(1) , 105520. 10.1016/j.jbc.2023.105520. CMCF Health
Abdelhafiz, Ali; Mohammed, Mona H.; Abed, Jehad; Lee, Dong‐Chan; Chen, Mengjie et al. (2024). Tri‐Metallic Catalyst for Oxygen Evolution Reaction Enables Continuous Operation of Anion Exchange Membrane Electrolyzer at 1A cm−2 for Hundreds of Hours. Advanced Energy Materials 14(16) . 10.1002/aenm.202303350. CLS-APS Materials
Aminfar, Parimah; Ferguson, Travis; Steele, Emily; MacNeil, Emerson M.; Matus, María Francisca et al. (2024). Accelerated size-focusing light activated synthesis of atomically precise fluorescent Au22(Lys–Cys–Lys)16 clusters. Nanoscale 16(1) , 205-211. 10.1039/d3nr04793h. CLS-APS Materials
Dou, Xiaomeng; Li, Wenying; Zhang, Kun; Hou, Huaming; He, Zhe et al. (2024). Size-Dependent Structural Features of Subnanometer PtSn Catalysts Encapsulated in Zeolite for Alkane Dehydrogenation. ACS Catalysis 14(5) , 2859-2871. 10.1021/acscatal.4c00314. CLS-APS Materials
Li, Xiaoyu; Cheng, Jinling; Hou, Huaming; Meira, Debora M.; Liu, Lichen et al. (2024). Reactant-Induced Structural Evolution of Pt Catalysts Confined in Zeolite. JACS Au . 10.1021/jacsau.3c00732. CLS-APS Materials
Mikhchian, Mehrnaz; Grosvenor, Andrew P. (2024). An investigation of the long-term aqueous corrosion behaviour of glass-zirconolite composite materials (Fe-Al-BG-CaZrTi2O7) as a potential nuclear wasteform. Corrosion Science 228, 111831. 10.1016/j.corsci.2024.111831. CLS-APS, VLS-PGM Materials
Morris, David; Du, Xiangsha; Jin, Rongchao; Zhang, Peng (2024). Single-atom alloy structure and unique bonding properties of Au104Ag40(PET)60 nanoclusters. Nanoscale 16(34) , 16140-16147. 10.1039/d4nr02688h. CLS-APS Materials