Supply and demand in cerebral energy metabolism: the role of nutrient transporters IA Simpson, A Carruthers, SJ Vannucci Journal of Cerebral Blood Flow & Metabolism 27 (11), 1766-1791, 2007 | 925 | 2007 |
Facilitated diffusion of glucose A Carruthers Physiological Reviews 70 (4), 1135-1176, 1990 | 470 | 1990 |
Study of the relationship between bilayer water permeability and bilayer physical state A Carruthers, DL Melchior Biochemistry 22 (25), 5797-5807, 1983 | 306 | 1983 |
Will the original glucose transporter isoform please stand up! A Carruthers, J DeZutter, A Ganguly, SU Devaskar American Journal of Physiology-Endocrinology and Metabolism 297 (4), E836-E848, 2009 | 273 | 2009 |
How bilayer lipids affect membrane protein activity A Carruthers, DL Melchior Trends in Biochemical Sciences 11 (8), 331-335, 1986 | 267 | 1986 |
The in vivo neuron‐to‐astrocyte lactate shuttle in human brain: evidence from modeling of measured lactate levels during visual stimulation S Mangia, IA Simpson, SJ Vannucci, A Carruthers Journal of neurochemistry 109, 55-62, 2009 | 231 | 2009 |
Glucose transporter oligomeric structure determines transporter function. Reversible redox-dependent interconversions of tetrameric and dimeric GLUT1. DN Hebert, A Carruthers Journal of Biological Chemistry 267 (33), 23829-23838, 1992 | 195 | 1992 |
Role of monosaccharide transport proteins in carbohydrate assimilation, distribution, metabolism, and homeostasis AJ Cura, A Carruthers Comprehensive Physiology 2 (2), 863-914, 2011 | 185 | 2011 |
Glucose transporter function is controlled by transporter oligomeric structure. A single, intramolecular disulfide promotes GLUT1 tetramerization RJ Zottola, EK Cloherty, PE Coderre, A Hansen, DN Hebert, A Carruthers Biochemistry 34 (30), 9734-9747, 1995 | 164 | 1995 |
A novel model for brain iron uptake: introducing the concept of regulation IA Simpson, P Ponnuru, ME Klinger, RL Myers, K Devraj, CL Coe, ... Journal of Cerebral Blood Flow & Metabolism 35 (1), 48-57, 2015 | 145 | 2015 |
Evidence for interindividual heterogeneity in the glucose gradient across the human red blood cell membrane and its relationship to hemoglobin glycation PK Khera, CH Joiner, A Carruthers, CJ Lindsell, EP Smith, RS Franco, ... Diabetes 57 (9), 2445-2452, 2008 | 142 | 2008 |
Equilibrium ligand binding to the human erythrocyte sugar transporter. Evidence for two sugar-binding sites per carrier. AL Helgerson, A Carruthers Journal of Biological Chemistry 262 (12), 5464-5475, 1987 | 128 | 1987 |
ATP regulation of the human red cell sugar transporter. A Carruthers Journal of Biological Chemistry 261 (24), 11028-11037, 1986 | 127 | 1986 |
Human erythrocyte hexose transporter activity is governed by bilayer lipid composition in reconstituted vesicles A Carruthers, DL Melchior Biochemistry 23 (26), 6901-6911, 1984 | 117 | 1984 |
Inhibitions of sugar transport produced by ligands binding at opposite sides of the membrane. Evidence for simultaneous occupation of the carrier by maltose and cytochalasin B A Carruthers, AL Helgerson Biochemistry 30 (16), 3907-3915, 1991 | 109 | 1991 |
The human erythrocyte sugar transporter is also a nucleotide binding protein A Carruthers, AL Helgerson Biochemistry 28 (21), 8337-8346, 1989 | 102 | 1989 |
WZB117 (2-Fluoro-6-(m-hydroxybenzoyloxy) Phenyl m-Hydroxybenzoate) inhibits GLUT1-mediated sugar transport by binding reversibly at the exofacial sugar binding site OA Ojelabi, KP Lloyd, AH Simon, JK De Zutter, A Carruthers Journal of Biological Chemistry 291 (52), 26762-26772, 2016 | 99 | 2016 |
Atypical GLUT1 deficiency with prominent movement disorder responsive to ketogenic diet JRL Friedman, EA Thiele, D Wang, KB Levine, EK Cloherty, HH Pfeifer, ... Movement disorders 21 (2), 241-244, 2006 | 99 | 2006 |
Human erythrocyte sugar transport is incompatible with available carrier models EK Cloherty, KS Heard, A Carruthers Biochemistry 35 (32), 10411-10421, 1996 | 97 | 1996 |
Evidence that functional erythrocyte-type glucose transporters are oligomers. A Pessino, DN Hebert, CW Woon, SA Harrison, BM Clancy, JM Buxton, ... Journal of Biological Chemistry 266 (30), 20213-20217, 1991 | 96 | 1991 |