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2009, ISBN 9781594202018, 475 p., [16] p. of plates
Book
The Neuroscientist, ISSN 1073-8584, 4/2014, Volume 20, Issue 2, pp. 104 - 111
In many peripheral and central neurons, A-type K+ currents, IA, have been identified and shown to be key determinants in shaping action potential waveforms and... 
Kv channel accessory subunits | Kv12 channels | Kv1 channels | Kv4 channels | posttranslational regulation of Kv channels | Potassium Channels, Voltage-Gated - metabolism | Animals | Neurons - physiology
Journal Article
Journal of Molecular and Cellular Cardiology, ISSN 0022-2828, 2012, Volume 53, Issue 2, pp. 145 - 155
Abstract Transmural gradients in myocyte action potential duration (APD) and Ca2+ -handling proteins are argued to be important for both the normal functioning... 
Cardiovascular | Ion channels/membrane transport | Cardiac development | Arrhythmogenesis | Gene expression | Intracellular Ca2 | CARDIAC & CARDIOVASCULAR SYSTEMS | CARDIAC MYOCYTES | DEVELOPING MOUSE HEART | CALCIUM CURRENT | ELECTRICAL HETEROGENEITY | CELL BIOLOGY | DEVELOPING RABBIT HEARTS | TRANSIENT OUTWARD CURRENT | NA+/CA2+ EXCHANGE CURRENT | GENE-EXPRESSION | Intracellular Ca2(+) | RAT-HEART | GATED NA+ CHANNELS | Immunohistochemistry | KCNQ1 Potassium Channel - genetics | KCNQ1 Potassium Channel - metabolism | Ether-A-Go-Go Potassium Channels - metabolism | Male | Ryanodine Receptor Calcium Release Channel - metabolism | Pericardium - metabolism | Sodium-Calcium Exchanger - genetics | Kv Channel-Interacting Proteins - genetics | Kv Channel-Interacting Proteins - metabolism | Endocardium - metabolism | In Situ Hybridization | Sodium-Calcium Exchanger - metabolism | Polymerase Chain Reaction | Sodium Channels - metabolism | G Protein-Coupled Inwardly-Rectifying Potassium Channels - metabolism | Cyclic Nucleotide-Gated Cation Channels - metabolism | NAV1.5 Voltage-Gated Sodium Channel | Animals, Newborn | Sarcoplasmic Reticulum Calcium-Transporting ATPases - metabolism | Cyclic Nucleotide-Gated Cation Channels - genetics | Rats | Ether-A-Go-Go Potassium Channels - genetics | G Protein-Coupled Inwardly-Rectifying Potassium Channels - genetics | Animals | Calcium Channels, L-Type - genetics | Ryanodine Receptor Calcium Release Channel - genetics | Heart Ventricles - metabolism | Sodium Channels - genetics | Calcium Channels, L-Type - metabolism | Sarcoplasmic Reticulum Calcium-Transporting ATPases - genetics
Journal Article
Biochemical Journal, ISSN 0264-6021, 01/2005, Volume 385, Issue 1, pp. 95 - 104
OSK1 (alpha-KTx3.7) is a 38-residue toxin cross-linked by three disulphide bridges that was initially isolated from the venom of the Asian scorpion Orthochirus... 
channel | Peptide synthesis | Scorpion toxin | Voltage-gated K | activated K | OSK1 | EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS | KV1.3 | POTASSIUM CHANNELS | BIOCHEMISTRY & MOLECULAR BIOLOGY | BLOCK | voltage-gated K+ channel | MAUROTOXIN | scorpion toxin | 3-DIMENSIONAL STRUCTURE | PANDINUS-IMPERATOR | CHARYBDOTOXIN | Ca(2+)activated K+ channel | CHEMICAL-SYNTHESIS | ION CHANNELS | peptide synthesis | Humans | Injections, Intraventricular | Molecular Sequence Data | Potassium Channels - metabolism | Scorpion Venoms - toxicity | Inhibitory Concentration 50 | Nuclear Magnetic Resonance, Biomolecular | Potassium Channel Blockers - toxicity | Potassium Channel Blockers - pharmacology | Toxins, Biological - pharmacology | Toxins, Biological - chemical synthesis | Amino Acid Sequence | Toxins, Biological - toxicity | Mice, Inbred C57BL | Scorpions - chemistry | Lethal Dose 50 | Potassium Channel Blockers - chemical synthesis | Scorpion Venoms - pharmacology | Scorpion Venoms - chemical synthesis | Animals | Scorpion Venoms - chemistry | Cell Line, Tumor | Mice | Toxins, Biological - chemistry | Potassium Channel Blockers - chemistry | Biochemistry, Molecular Biology | Potassium Channels | Toxins, Biological | Life Sciences | Scorpion Venoms | Scorpions | Potassium Channel Blockers | GFP, green fluorescent protein | [Ca2+]i, internal Ca2+ concentration | KCa3.1 channel, type 1 intermediate-conductance Ca2+-activated K+ channel (IK1) | OSK1, toxin 1 from the scorpion Orthochirus scrobiculosus (α-KTx3.7) | Ca2+-activated K+ channel | Kv channel, mammalian voltage-gated K+ channel | NOE, nuclear Overhauser effect | LD50, 50% lethal dose | 3D, three-dimensional | Kv11.x channel, human ether-a-go-go-related K+ channel (HERG) | FCS, foetal calf serum | KTx1, kaliotoxin 1 | AgTx, agitoxin | KCa1.1 channel, large-conductance Ca2+-activated K+ channel (BK or Sloα) | t-Bu, t-butyl | Fmoc, Nα-fluoren-9-ylmethyloxycarbonyl | KCa2.1, KCa2.2 and KCa2.3 channels, type 1, 2 and 3 small-conductance Ca2+-activated K+ channels (SK1, SK2 and SK3 respectively) | MALDI–TOF, matrix-assisted laser-desorption ionization–time-of-flight | TFA, trifluoroacetic acid
Journal Article
Cell Death and Differentiation, ISSN 1350-9047, 01/2010, Volume 17, Issue 1, pp. 134 - 144
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2016, Volume 6, Issue 1, p. 38412
Voltage-gated potassium (Kv) channels comprise pore-forming a subunits and a multiplicity of regulatory proteins, including the cardiac-expressed and cardiac... 
BRUGADA SYNDROME | GENE | MULTIDISCIPLINARY SCIENCES | MUTATION | LONG QT SYNDROME | ARRHYTHMIA | I-KS | EXPRESSION | ATRIAL-FIBRILLATION | INHIBITORY SUBUNIT | DELETION | Heart Ventricles - cytology | Cricetulus | Kv1.1 Potassium Channel - metabolism | Humans | Kv Channel-Interacting Proteins - genetics | Kv Channel-Interacting Proteins - metabolism | Protein Subunits - metabolism | Potassium Channels - metabolism | Oocytes - cytology | Shal Potassium Channels - genetics | Protein Isoforms - metabolism | Potassium Channels, Voltage-Gated - metabolism | Transgenes | CHO Cells | Potassium Channels, Voltage-Gated - genetics | Protein Subunits - genetics | Kv1.1 Potassium Channel - genetics | Heart Atria - cytology | Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels - metabolism | Myocytes, Cardiac - cytology | Signal Transduction | Oocytes - metabolism | Xenopus laevis | Gene Expression Regulation | Heart Atria - metabolism | Potassium Channels - genetics | Action Potentials - physiology | Shal Potassium Channels - metabolism | Animals | Myocytes, Cardiac - metabolism | Heart Ventricles - metabolism | Mice | Primary Cell Culture | Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels - genetics | Protein Isoforms - genetics | Heart | Atrium | Arrhythmia | Cardiomyocytes | Myocytes | Oocytes | Isoforms | Xenografts | Potassium channels (voltage-gated) | Kinetics | Potassium | Heart diseases | Regulatory proteins | Ion channels (cyclic nucleotide-gated)
Journal Article
Biochemical Journal, ISSN 0264-6021, 06/2006, Volume 396, Issue 2, pp. 255 - 263
A homology model of the housefly voltage-gated sodium channel was developed to predict the location of binding sites for the insecticides fenvalerate, a... 
Pyrethroids | Docking | Molecular modelling | Sodium channel | Knockdown resistance (kdr) | 1,1,1-Trichloro-2,2-bis(p-chlorophenyl)ethane(DDT) | GATING CHARGE | knockdown resistance (kdr) | KNOCKDOWN RESISTANCE | molecular modelling | BIOCHEMISTRY & MOLECULAR BIOLOGY | AUTOMATED DOCKING | SENSITIVITY | PYRETHROID INSECTICIDES | IDENTIFICATION | 1, 1, 1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT) | docking | pyrethroids | CONFORMATIONAL-CHANGES | sodium channel | MUTATION | K+ CHANNEL | POTASSIUM CHANNEL | Houseflies - genetics | Nitriles - pharmacology | Humans | Protein Conformation - drug effects | Insecticide Resistance - genetics | Molecular Sequence Data | Structure-Activity Relationship | Pyrethrins - pharmacology | Arachnida - metabolism | Kv1.2 Potassium Channel - chemistry | Sodium Channels - metabolism | Insecticide Resistance - drug effects | DDT - metabolism | Pyrethrins - metabolism | Binding Sites | Insecticides - pharmacology | Amino Acid Sequence | Nitriles - metabolism | Arachnida - genetics | Models, Molecular | DDT - pharmacology | Kv1.2 Potassium Channel - genetics | Sequence Alignment | Animals | Houseflies - metabolism | Insecticides - metabolism | Sodium Channels - chemistry | Ligands | Sodium Channels - genetics | Mutation | KcsA, Streptomyces lividans potassium channel | para, paralytic | Kv, voltage-gated potassium channel | Mthk, Methanobacterium thermo-autotrophicum potassium channel | LD, lethal dose | DDT, 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane | kdr, knockdown resistance | KvAP, Aeropyrum pernix Kv channel | 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT)
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 05/2018, Volume 115, Issue 21, pp. 5426 - 5431
The selectivity filter and the activation gate in potassium channels are functionally and structurally coupled. An allosteric coupling underlies C-type... 
Shaker channel | Kv 1.5 | Allosteric coupling | C-type inactivation | KcsA | MULTIDISCIPLINARY SCIENCES | SLOW INACTIVATION | DYNAMICS | allosteric coupling | CONDUCTION | MUTATIONS | SELECTIVITY | POTASSIUM CHANNEL | Biological Sciences
Journal Article
Journal Article