Gene transfer from bacteria and archaea facilitated evolution of an extremophilic eukaryote G Schönknecht, WH Chen, CM Ternes, GG Barbier, RP Shrestha, ... Science 339 (6124), 1207-1210, 2013 | 536 | 2013 |
Comparative Genomics of Two Closely Related Unicellular Thermo-Acidophilic Red Algae, Galdieria sulphuraria and Cyanidioschyzon merolae, Reveals the Molecular Basis of the … G Barbier, C Oesterhelt, MD Larson, RG Halgren, C Wilkerson, ... Plant physiology 137 (2), 460-474, 2005 | 251 | 2005 |
Structural basis of eukaryotic nitrate reduction: crystal structures of the nitrate reductase active site K Fischer, GG Barbier, HJ Hecht, RR Mendel, WH Campbell, G Schwarz The Plant Cell 17 (4), 1167-1179, 2005 | 193 | 2005 |
Metabolism and metabolomics of eukaryotes living under extreme conditions APM Weber, RJ Horst, GG Barbier, C Oesterhelt International review of cytology 256, 1-34, 2007 | 57 | 2007 |
Purification and biochemical characterization of simplified eukaryotic nitrate reductase expressed in Pichia pastoris GG Barbier, RC Joshi, ER Campbell, WHB Campbell Protein expression and purification 37 (1), 61-71, 2004 | 43 | 2004 |
Nitrate reductase for nitrate analysis in water WH Campbell, P Song, GG Barbier Environmental Chemistry Letters 4, 69-73, 2006 | 42 | 2006 |
Viscosity effects on eukaryotic nitrate reductase activity GG Barbier, WH Campbell Journal of Biological Chemistry 280 (28), 26049-26054, 2005 | 27 | 2005 |
Genomics of the thermo-acidophilic red alga Galdieria sulphuraria GG Barbier, M Zimmermann, APM Weber Astrobiology and Planetary Missions 5906, 67-78, 2005 | 15 | 2005 |
Respiratory energy demands and scope for demand expansion and destruction U Bathe, BJ Leong, K Van Gelder, GG Barbier, CS Henry, JS Amthor, ... Plant Physiology 191 (4), 2093-2103, 2023 | 9 | 2023 |
A genomics approach to understanding the biology of thermo-acidophilic red algae APM Weber, GG Barbier, RP Shrestha, RJ Horst, A Minoda, C Oesterhelt Algae and Cyanobacteria in Extreme Environments, 503-518, 2007 | 9 | 2007 |
Crystal structure of the yeast nitrate reductase molybdenum domain provides insight into eukaryotic nitrate assimilation K Fischer, GG Barbier, HJ Hecht, RR Mendel, WH Campbell, G Schwarz Plant Cell 17, 1167-1179, 2005 | 8 | 2005 |
Genetic modification of Pichia Pastoris for production of propylene glycol from glycerol GG Barbier, JL Ladd, ER Campbell, WH Campbell International Journal of Genetic Engineering 1 (1), 6-13, 2011 | 7 | 2011 |
Expression of Pichia angusta nitrate reductase (YNaR1) in Pichia pastoris GG Barbier, WH Campbell Current Topics in Gene Expression Systems: Program and Abstracts, Abstract …, 2000 | 5 | 2000 |
Simplified eukaryotic nitrate reductase WH Campbell, GG Barbier, ER Campbell US Patent 7,262,038, 2007 | 3 | 2007 |
The high-resolution crystal structure of eukaryotic assimilatory nitrate reductase Mo domain K Fischer, G Barbier, HJ Hecht, RR Mendel, WH Campbell, G Schwarz Foundations of Crystallography 60 (a1), s148-s148, 2004 | | 2004 |
Engineering of a simplified nitrate reductase and study of the dynamic catalysis of nitrate reductase and its catalytic fragments GG Barbier Michigan Technological University, 2003 | | 2003 |
Full wwPDB X-ray Structure Validation Report i○ JA Hirsch, C Schubert, VV Gurevich, PB Sigler | | |
Nitrate reductase for nitrate analysis in water EC Lett, GG Barbier | | |