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Proteins: Structure, Function, and Bioinformatics, ISSN 0887-3585, 10/2014, Volume 82, Issue 10, pp. 2797 - 2811
.... In this study, we establish homology between previously recognized APC superfamily members and proteins of seven new families... 
transporter classification database | anion exchanger 1 | amino acid‐polyamine‐organoCation (APC) superfamily | superfamily tree | carbon starvation A protein | Transporter classification database | Superfamily tree | Amino acid-polyamine-organoCation (APC) superfamily | Anion exchanger 1 | Carbon starvation A protein | PROTEIN | ACID | MECHANISM | SEQUENCES | MEMBRANE | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | TRANSPORT | BIOPHYSICS | GENE | amino acid-polyamine-organoCation (APC) superfamily | PHYLOGENETIC CHARACTERIZATION | ANION-EXCHANGER 1 | Trans-Activators - classification | Amino Acid Transport Systems - chemistry | Antiporters - chemistry | Humans | Phylogeny | Trans-Activators - chemistry | Escherichia coli Proteins - classification | Protein Isoforms - metabolism | Amino Acid Transport Systems - classification | Biological Transport | Protein Isoforms - classification | Cation Transport Proteins - metabolism | Protein Isoforms - chemistry | Databases, Protein | Antiporters - genetics | Trans-Activators - genetics | Cation Transport Proteins - genetics | Antiporters - classification | Cation Transport Proteins - classification | Organic Cation Transport Proteins - metabolism | Protein Structure, Secondary | Organic Cation Transport Proteins - chemistry | Computational Biology | Models, Molecular | Terminology as Topic | Antiporters - metabolism | Escherichia coli Proteins - metabolism | Amino Acid Transport Systems - metabolism | Amino Acid Motifs | Sequence Homology, Amino Acid | Animals | Amino Acid Transport Systems - genetics | Escherichia coli Proteins - genetics | Organic Cation Transport Proteins - classification | Trans-Activators - metabolism | Software | Internet | Cation Transport Proteins - chemistry | Escherichia coli Proteins - chemistry | Organic Cation Transport Proteins - genetics | Cluster Analysis | Protein Isoforms - genetics | Proteins | Starvation | Polyamines | Branched chain amino acids | Analysis | Amino acid-Polyamine-organoCation (APC) superfamily | Transporter Classification Database | Anion Exchanger 1 | SuperFamily Tree
Journal Article
Journal Article
Journal Article
Nature communications, ISSN 2041-1723, 2018, Volume 9, Issue 1, pp. 4228 - 11
Journal Article
PLoS biology, ISSN 1545-7885, 2019, Volume 17, Issue 1, p. e2006571
...), the low catecholamine clearance capacity of SLC6A2 may limit the cleaning efficiency. Here, we report that mouse organic cation transporter 3 (Oct3; Slc22a3... 
NOREPINEPHRINE UPTAKE | THERMOGENESIS | LIPOLYSIS | BIOCHEMISTRY & MOLECULAR BIOLOGY | MOUSE | GENES | BIOLOGY | CAUSAL VARIANTS | DIFFERENTIATION | EXPRESSION | FAT-CELL | BROWN | Norepinephrine - pharmacology | Catecholamines - metabolism | Humans | Octamer Transcription Factor-3 - biosynthesis | Adipose Tissue, White - metabolism | Male | Octamer Transcription Factor-3 - genetics | Thermogenesis - physiology | Adipose Tissue - metabolism | HEK293 Cells | Cyclic AMP-Dependent Protein Kinases - metabolism | Organic Cation Transport Proteins - metabolism | Signal Transduction | Mice, Inbred C57BL | Organic Cation Transport Proteins - biosynthesis | Obesity - metabolism | Macrophages - metabolism | Animals | Energy Metabolism | Adipocytes - metabolism | Octamer Transcription Factor-3 - metabolism | Cyclic AMP Response Element-Binding Protein - metabolism | Mice | Norepinephrine Plasma Membrane Transport Proteins - metabolism | Organic Cation Transport Proteins - genetics | Adipose Tissue, Beige - metabolism | Adipose tissues | Physiological aspects | Catecholamines | Fat cells | Carrier proteins | Protein kinase A | Bioengineering | Adipose tissue | Body fat | Disease | Hormones | Adipocytes | Proteins | Mitochondria | Life sciences | Obesity | Route selection | Organic cation transporter | AMP | Body temperature | Medical treatment | Metabolism | Cyclic AMP response element-binding protein | Gene expression | Catecholamine | Ablation | Lipolysis | Browning | Thermogenesis | Pharmacy | Software | Transporter | Metabolic disorders | Metabolic rate | Laboratories | Oct-4 protein | Genes | Biology | Kinases | Macrophages | Glucose metabolism | Transcription activation | Schools | Pharmaceutical sciences | Supervision | Adenosine monophosphate | Neurons | Therapeutic applications | Inflammation | Medicine | Adenosine kinase | Glycolysis | Sympathetic nerves | Norepinephrine | Adrenergic receptors | Cations
Journal Article
Journal of Pharmacology and Experimental Therapeutics, ISSN 0022-3565, 02/2012, Volume 340, Issue 2, pp. 393 - 403
Cimetidine, an H 2 receptor antagonist, has been used to investigate the tubular secretion of organic cations in human kidney... 
RENAL TUBULAR SECRETION | METFORMIN | CLEARANCE | PROCAINAMIDE | MEMBRANE | IN-VIVO | HUMANS | ELIMINATION | PHARMACOLOGY & PHARMACY | FUNCTIONAL-CHARACTERIZATION | RANITIDINE | Tetraethylammonium - pharmacokinetics | Cimetidine - pharmacokinetics | Humans | Cephalexin - metabolism | Male | Organic Cation Transporter 1 - metabolism | Metformin - metabolism | Organic Cation Transporter 2 | Organic Cation Transporter 1 - genetics | Dose-Response Relationship, Drug | Kidney - metabolism | Organic Cation Transport Proteins - antagonists & inhibitors | Transfection | Liver - drug effects | Metformin - urine | Organic Cation Transport Proteins - drug effects | Tetraethylammonium - urine | 3-Iodobenzylguanidine - metabolism | HEK293 Cells | Biological Transport - drug effects | 1-Methyl-4-phenylpyridinium - metabolism | Metformin - administration & dosage | Cimetidine - administration & dosage | Metformin - blood | Binding, Competitive - physiology | Kidney - drug effects | Metformin - pharmacokinetics | Organic Cation Transport Proteins - metabolism | Tetraethylammonium - administration & dosage | Cephalexin - administration & dosage | Liver - metabolism | Cephalexin - urine | Mice, Inbred Strains | Tetraethylammonium - blood | Animals | Pyridines - metabolism | Tetraethylammonium - metabolism | Drug Interactions - physiology | Organic Cation Transporter 1 - antagonists & inhibitors | Cimetidine - pharmacology | Cimetidine - metabolism | Mice | Organic Cation Transporter 1 - drug effects | Kinetics | Organic Cation Transport Proteins - genetics | Cephalexin - blood | Cephalexin - pharmacokinetics
Journal Article
British journal of pharmacology, ISSN 0007-1188, 02/2010, Volume 159, Issue 4, pp. 898 - 908
Background:  Solute carriers (SLCs), in particular organic cation transporters (OCTs), have been implicated in the cellular uptake of platinum-containing anticancer compounds... 
platinum uptake | SLC22A2 | oxaliplatin | solute carrier (SLC) | organic cation transporter (OCT) | drug resistance | cisplatin | Antineoplastic Agents/metabolism/pharmacology/therapeutic use | Cell Line | Carboplatin/metabolism | Organoplatinum Compounds/metabolism/pharmacology/therapeutic use | Platinum Compounds/metabolism/pharmacology/therapeutic use | Humans | Drug Resistance, Neoplasm | Treatment Outcome | Cell Survival/drug effects | Organic Cation Transport Proteins/antagonists & inhibitors/genetics/metabolism | Ovarian Neoplasms/drug therapy/genetics/metabolism | RNA, Messenger/metabolism | Dose-Response Relationship, Drug | Spectrophotometry, Atomic | Cisplatin/metabolism | Transfection | Biological Transport | Cell Line, Tumor | Female | Kinetics | Solute carrier (SLC) | Organic cation transporter (OCT) | Oxaliplatin | Drug resistance | Cisplatin | Platinum uptake | MEMBRANE TRANSPORTERS | COPPER TRANSPORTERS | OVARIAN-CANCER | CELL-LINES | CISPLATIN-INDUCED APOPTOSIS | PHARMACOLOGY | RESISTANCE | PHARMACOLOGY & PHARMACY | CLINICAL ACTIVITY | EXPRESSION | Antineoplastic Agents - therapeutic use | RNA, Messenger - metabolism | Organic Cation Transporter 2 | Organoplatinum Compounds - pharmacology | Antineoplastic Agents - metabolism | Ovarian Neoplasms - genetics | Platinum Compounds - therapeutic use | Organic Cation Transport Proteins - antagonists & inhibitors | Organoplatinum Compounds - metabolism | Antineoplastic Agents - pharmacology | Ovarian Neoplasms - metabolism | Ovarian Neoplasms - drug therapy | Cell Survival - drug effects | Organic Cation Transport Proteins - metabolism | Cisplatin - metabolism | Carboplatin - metabolism | Organic Cation Transport Proteins - genetics | Organoplatinum Compounds - therapeutic use | Platinum Compounds - pharmacology | Platinum Compounds - metabolism | Index Medicus | Research Papers
Journal Article
Metabolism, ISSN 0026-0495, 2015, Volume 64, Issue 2, pp. 296 - 304
Abstract Objective 5′-adenosine monophosphate-activated protein kinase (AMPK) is a key molecule of metabolic enhancement in skeletal muscle... 
Endocrinology & Metabolism | Organic cation transporter | 5′-adenosine monophosphate-activated protein kinase | Metformin | Glucose transport | Skeletal muscle | Skeletalmuscle | 5′-adenosine monophosphate-activated | protein kinase | PHOSPHORYLATION | INVOLVEMENT | INCREASES | GLUCOSE-TRANSPORT | ISOFORM | ACETYL-COA CARBOXYLASE | 5 '-adenosine monophosphate-activated protein kinase | INSULIN | ENDOCRINOLOGY & METABOLISM | AMPK | ALPHA-1-ISOFORM | STRESS | AMP-Activated Protein Kinases - metabolism | Muscle Fibers, Fast-Twitch - drug effects | Rats, Wistar | Hypoglycemic Agents - metabolism | Muscle Fibers, Fast-Twitch - metabolism | Male | Muscle Fibers, Slow-Twitch - metabolism | Muscle Fibers, Slow-Twitch - drug effects | Metformin - metabolism | Muscle Fibers, Slow-Twitch - enzymology | Organic Cation Transport Proteins - antagonists & inhibitors | Protein Processing, Post-Translational - drug effects | Membrane Transport Modulators - pharmacology | Biological Transport - drug effects | Muscle Fibers, Fast-Twitch - enzymology | Phosphorylation - drug effects | 3-O-Methylglucose - metabolism | Organic Cation Transport Proteins - metabolism | Random Allocation | Enzyme Activation - drug effects | AMP-Activated Protein Kinases - chemistry | Animals | Energy Metabolism | Cimetidine - pharmacology | In Vitro Techniques | Muscles | Adenylic acid | Protein kinases
Journal Article
PloS one, ISSN 1932-6203, 2011, Volume 6, Issue 7, p. e22163
Journal Article
Nature communications, ISSN 2041-1723, 2016, Volume 7, Issue 1, pp. 10880 - 10880
Journal Article