| Hamilton, Jordan G.; Grosskleg, Jay; Hilger, David; Dhillon, Gurbir Singh; Bradshaw, Kris et al. (2019). In situ transformations of bonechar and tri-poly phosphate amendments in phosphorus-limited subsurface soils. Applied Geochemistry 109, 104398. 10.1016/j.apgeochem.2019.104398. | CMCF, SXRMB, VESPERS | Peer-Reviewed Article |  | 
		
		    
    | Singh; Noreen (2018). Examining the Biological Significance of Histidine and Aspartic Acid Residues in the Reaction Mechanism of ATP-Citrate Lyase. Supervisor: Fraser, Marie E.. Alberta, Canada:  University of Calgary.  http://hdl.handle.net/1880/106407. | CMCF | Masters Thesis |  | 
		
		    
    | Colville; Scott Donald (2018). Enhanced Petroleum Hydrocarbon Remediation by Biostimulation: Effects on Groundwater Microbial Communities, Geochemistry, and Mineralogy. Supervisor: McBeth, Joyce M. SK, Canada:  University of Saskatchewan.  http://hdl.handle.net/10388/11488. | CMCF-BM | Masters Thesis |  | 
		
		    
    | Bulmer; David Roy (2019). Chemical interactions of citrate, calcium and phosphate in a calcareous Saskatchewan subsoil. Supervisor: Peak, Derek. SK, Canada:  University of Saskatchewan.  http://hdl.handle.net/10388/11871. | CMCF, SXRMB | Masters Thesis |  | 
		
		    
    | Botor; Ramjay Jude L. (2018). Understanding New Trends on Gold Mineralization at the Yellowknife City Gold Project, Northwest Territories, using Synchrotron X-ray Spectroscopy. Supervisor: Banerjee, Neil R.; Van Loon, Lisa L.. Ontario, Canada:  Western University.  https://ir.lib.uwo.ca/etd/5915/. | CMCF-BM, IDEAS | Masters Thesis |  | 
		
		    
    | Wang, F.; Cheng, W.; Shang, H.; Wang, R.; Zhang, B. et al. (2021). The Crystal Structure of human MTH1 from Biortus. Protein Data Bank: 7esf. | CMCF-ID | PDB Deposition |  | 
		
		    
    | Wallweber, H.; Mortara, K.; Ferri, E.; Wang, W.; Rudolph, J. et al. (2020). Structure of phosphorylated apo IRE1. Protein Data Bank: 6w3c. | CMCF-ID | PDB Deposition |  | 
		
		    
    | Wallweber, H.; Mortara, K.; Ferri, E.; Rudolph, J.; Wang, W. et al. (2020). Structure of apo unphosphorylated IRE1. Protein Data Bank: 6w3b. | CMCF-ID | PDB Deposition |  | 
		
		    
    | Suits, M.D.L.; Whiteside, J. (2019). PntC-AEPT: fusion protein of phosphonate-specific cytidylyltransferase and 2-aminoethylphosphonate (AEP) transaminase from Treponema denticola in complex with cytidine monophosphate-AEP. Protein Data Bank: 6pd2. | CMCF-ID | PDB Deposition |  | 
		
		    
    | Voth; Kevin Andrew (2019). Structural Biology of Legionella pneumophila Effectors. Supervisor: Cygler, Miroslaw. SK, Canada:  University of Saskatchewan.  http://hdl.handle.net/10388/12302. | CMCF | Doctoral Thesis |  | 
		
		    
    | Crowe; Adam Michael (2018). The catabolism of the last two rings of cholesterol by Mycobacterium tuberculosis. Supervisor: Eltis, Lindsay D.. BC, Canada:  University of British Columbia.  http://hdl.handle.net/2429/64634. | CMCF-BM | Doctoral Thesis |  | 
		
		    
    | Vergunst, Kathleen L.; Langelaan, David N. (2022). The N-terminal tail of the hydrophobin SC16 is not required for rodlet formation. Scientific Reports 12(1) . 10.1038/s41598-021-04223-6. | CMCF-BM | Peer-Reviewed Article | Agriculture | 
		
		    
    | Uguen, Mélanie; Shell, Devan J.; Silva, Madhushika; Deng, Yu; Li, Fengling et al. (2025). Potent and selective SETDB1 covalent negative allosteric modulator reduces methyltransferase activity in cells. Nature Communications 16(1) . 10.1038/s41467-025-57005-3. [PDB: 9cuw, 9cux] | CMCF-BM | Peer-Reviewed Article | Agriculture | 
		
		    
    | 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 | 
		
		    
    | Rolfe, Nicolas; Schroeter, Kurt L.; Forrester, Taylor JB.; Kimber, Matthew S.; Seah, Stephen YK. et al. (2025). Sal is a proteobacterial bile acid aldolase that repurposes key thiolase catalytic residues for retroaldol cleavage of C5 steroid side chains. Journal of Biological Chemistry 301(8) , 110439. 10.1016/j.jbc.2025.110439. [PDB: 9myr] | CMCF-BM | Peer-Reviewed Article | Agriculture |