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Seminars in Cell and Developmental Biology, ISSN 1084-9521, 2011, Volume 22, Issue 2, pp. 160 - 165
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2016, Volume 113, Issue 46, pp. 13209 - 13214
Many forms of short-term synaptic plasticity rely on regulation of presynaptic voltage-gated Ca type 2.1 (Ca 2.1) channels. However, the contribution of... 
Calcium channel | Calcium sensor proteins | Calmodulin | Hippocampus | Synaptic plasticity | calcium channel | calcium sensor proteins | Biological Sciences | synaptic plasticity | hippocampus | calmodulin
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2014, Volume 111, Issue 46, pp. 16598 - 16603
L-type calcium (Ca²⁺) currents conducted by voltage-gated Ca²⁺ channel Cav 1.2 initiate excitation-contraction coupling in cardiomyocytes. Upon activation of... 
Heart | Proteins | Cardiomegaly | Phosphorylation | Calcium channels | Receptors | Calcium | Myocardium | Antibodies | Physiological regulation | Calcium - metabolism | Myocardial Contraction - physiology | Heart Failure - physiopathology | Myocardial Contraction - drug effects | Barium - metabolism | Mutation, Missense | Arrhythmias, Cardiac - physiopathology | Transfection | Adaptation, Physiological - genetics | Mice, Mutant Strains | Arrhythmias, Cardiac - genetics | Calcium Channels, L-Type - chemistry | Arrhythmias, Cardiac - metabolism | Exercise Tolerance - genetics | Cardiomyopathy, Hypertrophic - genetics | Cardiomyopathy, Hypertrophic - metabolism | Mice, Inbred C57BL | Adaptation, Physiological - physiology | Adrenergic beta-Agonists - pharmacology | Models, Molecular | Calcium Channels, L-Type - physiology | Heart Failure - genetics | Heart Failure - metabolism | Receptors, Adrenergic, beta - physiology | Point Mutation | Animals | Calcium Channels, L-Type - genetics | Cardiomyopathy, Hypertrophic - physiopathology | Myocytes, Cardiac - physiology | Exercise Tolerance - physiology | Isoproterenol - pharmacology | Dihydropyridines - pharmacology | Protein Conformation | Signal Transduction - physiology | Mice | Protein Processing, Post-Translational | Casein Kinase II - metabolism | Phosphoserine - chemistry | Amino Acid Substitution | Ion Transport - genetics | calcium channel | Biological Sciences | β-adrenergic | cAMP | cardiac hypertrophy | protein kinase
Journal Article
Biophysical Journal, ISSN 0006-3495, 01/2010, Volume 98, Issue 3, p. 754
Journal Article
Journal of Clinical Investigation, ISSN 0021-9738, 04/2013, Volume 123, Issue 4, pp. 1798 - 1808
Journal Article
Neuron, ISSN 0896-6273, 01/2008, Volume 57, Issue 2, pp. 210 - 216
Short-term synaptic plasticity shapes the postsynaptic response to bursts of impulses and is crucial for encoding information in neurons, but the molecular... 
CELLBIO | MOLNEURO | SIGNALING | Proteins | Cell culture | Mutation | Neurons
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2016, Volume 113, Issue 46, p. 13209
  Many forms of short-term synaptic plasticity rely on regulation of presynaptic voltage-gated Ca^sup 2+^ type 2.1 (Ca^sub V^2.1) channels. However, the... 
Proteins | Neurochemistry | Brain | Animal memory | Rodents | Mutation | Animal cognition
Journal Article
Proceedings of the National Academy of Sciences, USA, ISSN 0027-8424, 11/2016, Volume 113, Issue 46, pp. 13209 - 13209
Many forms of short-term synaptic plasticity rely on regulation of presynaptic voltage-gated Ca super( 2+) type 2.1 (Ca sub( V)2.1) channels. However, the... 
Journal Article
Nature Neuroscience, ISSN 1097-6256, 09/2006, Volume 9, Issue 9, pp. 1142 - 1149
Journal Article