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animals (94) 94
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Journal of Biological Chemistry, ISSN 0021-9258, 03/2016, Volume 291, Issue 13, pp. 7097 - 7106
The structural similarity between defensins and scorpion neurotoxins suggests that they might have evolved from a common ancestor. However, there is no direct... 
VENOM | PORE REGION | bacteria | TOXIN | BIOCHEMISTRY & MOLECULAR BIOLOGY | structure-function | KV1.3 CHANNEL | STRUCTURAL BASIS | FUNGAL DEFENSIN | defensin | INSECT DEFENSINS | neurotoxin | potassium channel | MESOBUTHUS-MARTENSII | PROTEOMIC ANALYSIS | K+ CHANNELS | Kv1.2 Potassium Channel - antagonists & inhibitors | Humans | Micrococcus luteus - growth & development | Potassium Channel Blockers - metabolism | Bacillus subtilis - growth & development | Defensins - pharmacology | Kv1.3 Potassium Channel - metabolism | Potassium Channel Blockers - pharmacology | Kv1.1 Potassium Channel - genetics | Amino Acid Sequence | Gene Expression | Methicillin-Resistant Staphylococcus aureus - drug effects | Models, Molecular | Recombinant Proteins - chemistry | Methicillin-Resistant Staphylococcus aureus - growth & development | Scorpion Venoms - chemistry | Kv1.2 Potassium Channel - metabolism | Neurotoxins - metabolism | Anti-Bacterial Agents - pharmacology | Mice | Scorpion Venoms - biosynthesis | Potassium Channel Blockers - chemistry | Defensins - metabolism | Defensins - genetics | Kv1.1 Potassium Channel - metabolism | Molecular Sequence Data | Neurotoxins - genetics | Structure-Activity Relationship | Defensins - chemistry | Kv1.3 Potassium Channel - genetics | Micrococcus luteus - drug effects | Scorpions - physiology | Anti-Bacterial Agents - chemistry | Protein Interaction Domains and Motifs | Recombinant Proteins - metabolism | Neurotoxins - chemistry | Protein Structure, Secondary | Kv1.1 Potassium Channel - antagonists & inhibitors | Anti-Bacterial Agents - metabolism | Scorpions - chemistry | Recombinant Proteins - genetics | Kv1.3 Potassium Channel - antagonists & inhibitors | Recombinant Proteins - pharmacology | Neurotoxins - pharmacology | Kv1.2 Potassium Channel - genetics | Sequence Alignment | Animals | Structural Homology, Protein | Staphylococcus aureus - drug effects | Staphylococcus aureus - growth & development | Bacillus subtilis - drug effects | Index Medicus | Cell Biology
Journal Article
Journal Article
Journal Article
Journal of Medicinal Chemistry, ISSN 0022-2623, 09/2015, Volume 58, Issue 17, pp. 6784 - 6802
Journal Article
Cell Death and Differentiation, ISSN 1350-9047, 01/2010, Volume 17, Issue 1, pp. 134 - 144
Journal Article
Journal Article
Journal Article
Hearing Research, ISSN 0378-5955, 03/2017, Volume 345, pp. 57 - 68
Low-voltage-activated K (g ) and hyperpolarization-activated mixed cation conductances (g ) mediate currents, I and I , through channels of the Kv1 (KCNA) and... 
Homeostasis | KCNA | HCN | Voltage-gated ion channels | Genetic compensation | Ventral cochlear nucleus | AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY | SURFACE EXPRESSION | DENDROTOXIN-BINDING-SITE | ACTIVITY-DEPENDENT REGULATION | SUBUNIT COMPOSITION | THRESHOLD POTASSIUM CURRENTS | NEUROSCIENCES | OTORHINOLARYNGOLOGY | VOLTAGE-CLAMP ANALYSIS | CURRENT I-H | AUDITORY-NERVE FIBERS | K+ CHANNELS | ACTIVATED CATION CURRENT | Mice, 129 Strain | Cochlear Nucleus - drug effects | Time Factors | Potassium Channels - deficiency | Cochlear Nucleus - cytology | Auditory Pathways - cytology | Potassium Channel Blockers - pharmacology | Kv1.1 Potassium Channel - genetics | Membrane Potentials - drug effects | Auditory Pathways - drug effects | Kv1.1 Potassium Channel - antagonists & inhibitors | Mice, Inbred C57BL | Gene Expression Regulation | Genotype | Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels - antagonists & inhibitors | Mice, Inbred ICR | Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels - deficiency | Mice, Knockout | Potassium Channels - genetics | Cochlear Nucleus - metabolism | Kv1.1 Potassium Channel - deficiency | Patch-Clamp Techniques | Phenotype | Animals | Neuronal Plasticity | Auditory Pathways - metabolism | Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels - genetics | Medical colleges | Neurosciences | Ion channels | voltage-gated ion channels | ventral cochlear nucleus | genetic compensation
Journal Article
Biochemical and Biophysical Research Communications, ISSN 0006-291X, 11/2008, Volume 376, Issue 3, pp. 525 - 530
Journal Article
Journal Article
ChemMedChem, ISSN 1860-7179, 10/2012, Volume 7, Issue 10, pp. 1775 - 1783
Journal Article