Publication Beamlines Strategic Pillar
Wu, Zhiyi; Shen, Jiahui; Li, Chaoran; Zhang, Chengcheng; Feng, Kai et al. (2022). Mo2TiC2 MXene-Supported Ru Clusters for Efficient Photothermal Reverse Water–Gas Shift. ACS Nano 17(2) , 1550-1559. 10.1021/acsnano.2c10707. CLS-APS Materials
Zhang, Xueni; Maciag, Bryan J.; Brenan, James M.; Mungall, James E. (2022). Experimental study of the partitioning of some platinum group elements (Pd and Ir) between orthopyroxene and silicate melt. Geochimica et Cosmochimica Acta 339, 127-138. 10.1016/j.gca.2022.10.038. CLS-APS Environment
Zhou, Ziyi; Liu, Peng; Wang, Sheng; Finfrock, Y. Zou; Ye, Zhihang et al. (2022). Iron-modified biochar-based bilayer permeable reactive barrier for Cr(VI) removal. Journal of Hazardous Materials 439, 129636. 10.1016/j.jhazmat.2022.129636. CLS-APS Materials
Lang, Dean (2022). Structure-Function Studies of the Methyltransferase Enzymes involved in Benzylisoquinoline Alkaloid Metabolism. Supervisor: Facchini, Peter; Ng, Kenneth KS. Alberta, Canada: University of Calgary. http://hdl.handle.net/1880/114661. CMCF Agriculture
Scheu, Karlton Irie (2022). Dissecting the biophysical properties and DNA-binding specificity of the ETV6 transcription factor. Supervisor: McIntosh, Lawrence. BC, Canada: University of British Columbia. http://hdl.handle.net/2429/82634. CMCF Health
van Vliet, Vera J. E.; Huynh, Nhan; Palà, Judith; Patel, Ankoor; Singer, Alex et al. (2022). Ubiquitin variants potently inhibit SARS-CoV-2 PLpro and viral replication via a novel site distal to the protease active site. PLoS Pathogens 18(12) , e1011065. 10.1371/journal.ppat.1011065. CMCF Health
Ayanath Kuttiyatveetil, J.R.; Pascal, J.M. (2022). Mouse PARP13/ZAP ZnF5-WWE1-WWE2 bound to ADPr. Protein Data Bank: 7sz3. CMCF-BM Agriculture
Ayanath Kuttiyatveetil, J.R.; Pascal, J.M. (2022). Mouse PARP13/ZAP ZnF5-WWE1-WWE2 bound to ATP. Protein Data Bank: 7sz2. CMCF-BM Agriculture
Forrester, Taylor J. B.; Ovchinnikova, Olga G.; Li, Zhixiong; Kitova, Elena N.; Nothof, Jeremy T. et al. (2022). The retaining β-Kdo glycosyltransferase WbbB uses a double-displacement mechanism with an intermediate adduct rearrangement step. Nature Communications 13(1) . 10.1038/s41467-022-33988-1. [PDB: 8csb, 8csc, 8csd, 8cse, 8csf] CMCF-BM, CMCF-ID Health
Forrester, T.J.B.; Kimber, M.S. (2022). WbbB D232C-Kdo adduct + alpha-Rha(1,3)GlcNAc ternary complex. Protein Data Bank: 8csf. CMCF-BM Agriculture
Forrester, T.J.B.; Kimber, M.S. (2022). WbbB in complex with alpha-Rha-(1-3)-beta-GlcNAc acceptor. Protein Data Bank: 8cse. CMCF-BM Agriculture
Forrester, T.J.B.; Kimber, M.S. (2022). WbbB D232N-Kdo adduct. Protein Data Bank: 8csc. CMCF-BM Agriculture
Gheorghita, A.A.; Li, E.Y.; Pfoh, R.; Howell, P.L. (2022). Structure of the Pseudomonas putida AlgKX modification and secretion complex. Protein Data Bank: 7ula. CMCF-BM Agriculture
Gheorghita, Andreea A.; Li, Yancheng E.; Kitova, Elena N.; Bui, Duong T.; Pfoh, Roland et al. (2022). Structure of the AlgKX modification and secretion complex required for alginate production and biofilm attachment in Pseudomonas aeruginosa. Nature Communications 13(1) . 10.1038/s41467-022-35131-6. [PDB: 7ula] CMCF-BM Health
Kouidmi, I.; Maddalena, M.; Laplante, S. (2022). HRas G12V in complex with GDP. Protein Data Bank: 7tam. CMCF-BM Agriculture