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Fiziol Zh (1994) ; 62(4): 84-94, 2016.
Article in Ukrainian | MEDLINE | ID: mdl-29975479

ABSTRACT

Calcium influx though voltage-gated calcium channels mediate a huge amount of physiological events and cellular responses. Numerous scientific reports indicate that calcium channels are involved in synaptic transmission, neurotransmitter release, regulation of gene expression, cellular membrane voltage oscillations, pacemaker activity, secretion of specific substances from nerve and secretory cells, morphological differentiation, activation of calcium-dependent enzymes, etc. This review represents the modern classification, molecular structure, physiological and pharmacological properties of voltage-gated calcium channels expressed in mammalian cells.


Subject(s)
Calcium Channels/metabolism , Cell Membrane/metabolism , Neurons/metabolism , Animals , Autistic Disorder/genetics , Autistic Disorder/metabolism , Autistic Disorder/physiopathology , Calcium Channels/chemistry , Calcium Channels/classification , Calcium Channels/genetics , Cerebellar Ataxia/genetics , Cerebellar Ataxia/metabolism , Cerebellar Ataxia/physiopathology , Gene Expression Regulation , Humans , Myoclonus/genetics , Myoclonus/metabolism , Myoclonus/physiopathology , Neurons/pathology , Neurotransmitter Agents/biosynthesis , Neurotransmitter Agents/metabolism , Respiratory Paralysis/genetics , Respiratory Paralysis/metabolism , Respiratory Paralysis/physiopathology , Synaptic Transmission
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