Publication Beamlines Strategic Pillar
Bacik, J.P.; Mark, B.L. (2012). Crystal structure of Salmonella typhimurium family 3 glycoside hydrolase (NagZ) covalently bound to 5-fluoro-GlcNAc.. Protein Data Bank: 4gvh. CMCF-ID Agriculture
Bacik, J.P.; Mark, B.L. (2012). Crystal structure of Salmonella typhimurium family 3 glycoside hydrolase (NagZ) bound to GlcNAc. Protein Data Bank: 4gvf. CMCF-ID Agriculture
Bacik, J.P.; Mark, B.L. (2012). Crystal structure of Salmonella typhimurium family 3 glycoside hydrolase (NagZ). Protein Data Bank: 4gvg. CMCF-ID Agriculture
Dong, A.; Dombrovski, L.; Brown, G.; Flick, R.; Tchigvintsev, D. et al. (2012). The Crystal structure of Maf protein of Bacillus subtilis. Protein Data Bank: 4heb. CMCF-ID Agriculture
Loewen, P.C.; Didychuk, A.L.; Switala, J.; Loewen, M.C. (2012). Structure of Pisum sativum Rubisco. Protein Data Bank: 4hhh. CMCF-ID Agriculture
Xu, C.; Tempel, W.; Cerovina, T.; El Bakkouri, M.; Bountra, C. et al. (2012). Crystal structure of KANK2 ankyrin repeats. Protein Data Bank: 4hbd. CMCF-ID Agriculture
Stetefeld, J. (2012). Crystal structure of DAVA-4. Protein Data Bank: 3usf. CMCF-BM Agriculture
Bacik, J.P.; Mark, B.L. (2012). Crystal structure of mutant (D318N) bacillus subtilis family 3 glycoside hydrolase (nagz) in complex with glcnac-murnac (space group P1211). Protein Data Bank: 4gyk. CMCF-ID Agriculture
Bacik, J.P.; Mark, B.L. (2012). Crystal structure of mutant (D318N) bacillus subtilis family 3 glycoside hydrolase (nagz) in complex with glcnac-murnac (space group P1). Protein Data Bank: 4gyj. CMCF-ID Agriculture
Thede, Gina L. (2012). Biochemical and structural characterization of CpxP and CpxA, key components of an envelope stress response in Escherichia coli. Supervisor: Young, Howard; Glover, Mark. Alberta, Canada: University of Alberta. https://doi.org/10.7939/R31C7M. CMCF-ID Agriculture
Hashemi, M.; Klymyshyn, D.; Moazed, B.; Achenbach, S. (2012). Functional analysis of single Poly(methyl-methacrylate)-based submicron pore electrophoretic flow detectors via translocation of differently sized silica nanoparticles. IET Nanobiotechnology 6(4) , 149-155. 10.1049/iet-nbt.2011.0063. SYLMAND
Lupascu, A.; Feng, Renfei; Sandilands, L. J.; Nie, Zixin; Baydina, V. et al. (2012). Structural study of Bi2Sr2CaCu2O8+δ exfoliated nanocrystals. Applied Physics Letters 101(22) , 223106. 10.1063/1.4768234. VESPERS
McLeod, J. A.; Moewes, A.; Zatsepin, D. A.; Kurmaev, E. Z.; Wypych, A. et al. (2012). Predicting the band gap of ternary oxides containing 3d10and 3d0metals. Physical Review B - Condensed Matter and Materials Physics 86(19) . 10.1103/physrevb.86.195207. SGM
Padmos, J. Daniel; Zhang, Peng (2012). Surface Structure of Organosulfur Stabilized Silver Nanoparticles Studied with X-ray Absorption Spectroscopy. Journal of Physical Chemistry C 116(43) , 23094-23101. 10.1021/jp3075332. CLS-APS, HXMA, SXRMB
Zhang, Xin; Palamarciuc, Tatiana; Rosa, Patrick; Létard, Jean-François; Doudin, Bernard et al. (2012). Electronic Structure of a Spin Crossover Molecular Adsorbate. Journal of Physical Chemistry C 116(44) , 23291-23296. 10.1021/jp3034962. SM