Molecular Mechanisms That Control Initiation and Termination of Physiological Depolarization-Evoked...
Molecular Mechanisms That Control Initiation and Termination of Physiological Depolarization-Evoked Transmitter Release
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United States: National Academy of Sciences
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English
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United States: National Academy of Sciences
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Ca²⁺ is essential for physiological depolarization-evoked synchronous neurotransmitter release. But, whether Ca²⁺ influx or another factor controls release initiation is still under debate. The time course of ACh release is controlled by a presynaptic inhibitory G protein-coupled autoreceptor (GPCR), whose agonist-binding affinity is voltage-sensit...
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Molecular Mechanisms That Control Initiation and Termination of Physiological Depolarization-Evoked Transmitter Release
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TN_cdi_proquest_journals_201412913
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https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_proquest_journals_201412913
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ISSN
0027-8424
E-ISSN
1091-6490
DOI
10.1073/pnas.0708540105