Discovery of a specific inhibitor of human GLUT5 by virtual screening and in vitro transport evaluation
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Tudor I. Oprea | Oleg Ursu | T. Oprea | O. Ursu | C. V. Iancu | J. Choe | Alayna M. George Thompson | Petr Babkin | Cristina V. Iancu | Alex Whang | Jun-yong Choe | P. Babkin | Alex Whang | Jun-yong Choe | Petr Babkin | Alex Whang
[1] T. Jess,et al. Kinetic analysis of the liver-type (GLUT2) and brain-type (GLUT3) glucose transporters in Xenopus oocytes: substrate specificities and effects of transport inhibitors. , 1993, The Biochemical journal.
[2] C. Burant,et al. Fructose transporter in human spermatozoa and small intestine is GLUT5. , 1992, The Journal of biological chemistry.
[3] Mark McGann,et al. FRED Pose Prediction and Virtual Screening Accuracy , 2011, J. Chem. Inf. Model..
[4] L. Tappy,et al. Metabolic effects of fructose and the worldwide increase in obesity. , 2010, Physiological reviews.
[5] J. Kimmons,et al. Dietary fructose consumption among US children and adults: the Third National Health and Nutrition Examination Survey. , 2008, Medscape journal of medicine.
[6] E A Merritt,et al. Raster3D: photorealistic molecular graphics. , 1997, Methods in enzymology.
[7] G. Reaven,et al. Fructose-induced insulin resistance and hypertension in rats. , 1987, Hypertension.
[8] B. Poolman,et al. Membrane reconstitution of ABC transporters and assays of translocator function , 2008, Nature Protocols.
[9] Tudor I. Oprea,et al. Targeting the transposase domain of the DNA repair component Metnase to enhance chemotherapy. , 2012, Cancer research.
[10] Tudor I. Oprea,et al. Virtual and biomolecular screening converge on a selective agonist for GPR30 , 2006, Nature chemical biology.
[11] Doman Kim,et al. Inhibition of human GLUT1 and GLUT5 by plant carbohydrate products; insights into transport specificity , 2015, Scientific Reports.
[12] Chuangye Yan,et al. Molecular basis of ligand recognition and transport by glucose transporters , 2015, Nature.
[13] H. Beck-Nielsen,et al. GLUT4 is reduced in slow muscle fibers of type 2 diabetic patients: is insulin resistance in type 2 diabetes a slow, type 1 fiber disease? , 2001, Diabetes.
[14] M. Carrasco,et al. Differential subcellular distribution of glucose transporters GLUT1–6 and GLUT9 in human cancer: Ultrastructural localization of GLUT1 and GLUT5 in breast tumor tissues , 2006, Journal of cellular physiology.
[15] K. Fung,et al. Inhibition of cell proliferation in human breast tumor cells by antisense oligonucleotides against facilitative glucose transporter 5 , 2004, Journal of cellular biochemistry.
[16] P. Hawkins,et al. Comparison of shape-matching and docking as virtual screening tools. , 2007, Journal of medicinal chemistry.
[17] J. Vera,et al. Human erythrocytes express GLUT5 and transport fructose. , 1997, Blood.
[18] B. Thorens,et al. Glucose transporters in the 21st Century. , 2010, American journal of physiology. Endocrinology and metabolism.
[19] Xinqi Gong,et al. Crystal structure of a bacterial homologue of glucose transporters GLUT1–4 , 2012, Nature.
[20] Y. Yazaki,et al. Characterization of rat GLUT5 and functional analysis of chimeric proteins of GLUT1 glucose transporter and GLUT5 fructose transporter. , 1995, Endocrinology.
[21] T. Jess,et al. The regulation of GLUT5 and GLUT2 activity in the adaptation of intestinal brush-border fructose transport in diabetes , 1996, Pflügers Archiv.
[22] Benjamin A. Ellingson,et al. Conformer Generation with OMEGA: Algorithm and Validation Using High Quality Structures from the Protein Databank and Cambridge Structural Database , 2010, J. Chem. Inf. Model..
[23] Tudor I. Oprea,et al. Compound collection preparation for virtual screening. , 2012, Methods in molecular biology.
[24] R. Lustig,et al. Toward a Unifying Hypothesis of Metabolic Syndrome , 2012, Pediatrics.
[25] A. Greener,et al. Site-directed mutagenesis using double-stranded plasmid DNA templates. , 1996, Methods in molecular biology.
[26] L. Boros,et al. Fructose induces transketolase flux to promote pancreatic cancer growth. , 2010, Cancer research.
[27] E. Siegel,et al. Fructose as a carbon source induces an aggressive phenotype in MDA-MB-468 breast tumor cells. , 2010, International journal of oncology.
[28] C. V. Iancu,et al. Crystal structure of a glucose/H+ symporter and its mechanism of action , 2013, Proceedings of the National Academy of Sciences.
[29] P. Seeberger,et al. Passive fructose transporters in disease: a molecular overview of their structural specificity. , 2013, Organic & biomolecular chemistry.
[30] Rodrigo Lopez,et al. Clustal W and Clustal X version 2.0 , 2007, Bioinform..
[31] David Rogers,et al. Extended-Connectivity Fingerprints , 2010, J. Chem. Inf. Model..
[32] P. Emsley,et al. Features and development of Coot , 2010, Acta crystallographica. Section D, Biological crystallography.
[33] Chao Xu,et al. Crystal structure of the human glucose transporter GLUT1 , 2014, Nature.
[34] K Henrick,et al. Electronic Reprint Biological Crystallography Secondary-structure Matching (ssm), a New Tool for Fast Protein Structure Alignment in Three Dimensions Biological Crystallography Secondary-structure Matching (ssm), a New Tool for Fast Protein Structure Alignment in Three Dimensions , 2022 .
[35] H. Kaback,et al. Localization of D-lactate dehydrogenase in native and reconstituted Escherichia coli membrane vesicles. , 1975, The Journal of biological chemistry.
[36] P. Hruz,et al. Cysteine-scanning Mutagenesis of Transmembrane Segment 7 of the GLUT1 Glucose Transporter* , 1999, The Journal of Biological Chemistry.
[37] J. Baselga,et al. Expression of the fructose transporter GLUT5 in human breast cancer. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[38] H. Kaback. [13] Bacterial Membranes , 1971 .
[39] Tudor I. Oprea,et al. A Selective ATP-Binding Cassette Subfamily G Member 2 Efflux Inhibitor Revealed via High-Throughput Flow Cytometry , 2013, Journal of biomolecular screening.
[40] R. Ferraris,et al. Regulation of the fructose transporter GLUT5 in health and disease. , 2008, American journal of physiology. Endocrinology and metabolism.
[41] T. Halgren. Merck molecular force field. I. Basis, form, scope, parameterization, and performance of MMFF94 , 1996, J. Comput. Chem..
[42] S. Iwata,et al. Structure and mechanism of the mammalian fructose transporter GLUT5 , 2015, Nature.
[43] R. Ferraris,et al. Dietary Induction of Intestinal Fructose Absorption in Weaning Rats , 1995, Pediatric Research.
[44] Tudor I. Oprea,et al. In vivo Effects of a GPR30 Antagonist , 2009, Nature chemical biology.
[45] M. Uldry,et al. The SLC2 family of facilitated hexose and polyol transporters , 2004, Pflügers Archiv.
[46] P. Kraulis. A program to produce both detailed and schematic plots of protein structures , 1991 .