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Opioid Receptor Regulation of Neuronal Voltage-Gated Calcium Channels
- 1.0540957 - ÚOCHB 2022 RIV US eng J - Journal Article
Weiss, Norbert - Zamponi, G. W.
Opioid Receptor Regulation of Neuronal Voltage-Gated Calcium Channels.
Cellular and Molecular Neurobiology. Roč. 41, č. 5 (2021), s. 839-847. ISSN 0272-4340. E-ISSN 1573-6830
Institutional support: RVO:61388963
Keywords : G-protein coupled receptors * voltage-gated calcium channels * mu opioid receptor * nociception opioid receptor
OECD category: Biochemistry and molecular biology
Impact factor: 4.231, year: 2021
Method of publishing: Limited access
https://doi.org/10.1007/s10571-020-00894-3
Neuronal voltage-gated calcium channels play a pivotal role in the conversion of electrical signals into calcium entry into nerve endings that is required for the release of neurotransmitters. They are under the control of a number of cellular signaling pathways that serve to fine tune synaptic activities, including G-protein coupled receptors (GPCRs) and the opioid system. Besides modulating channel activity via activation of second messengers, GPCRs also physically associate with calcium channels to regulate their function and expression at the plasma membrane. In this mini review, we discuss the mechanisms by which calcium channels are regulated by classical opioid and nociceptin receptors. We highlight the importance of this regulation in the control of neuronal functions and their implication in the development of disease conditions. Finally, we present recent literature concerning the use of novel μ-opioid receptor/nociceptin receptor modulators and discuss their use as potential drug candidates for the treatment of pain.
Permanent Link: http://hdl.handle.net/11104/0318541
Number of the records: 1