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Internalization and recycling of Cav1 and Cav2 channel complexes. Cav1... |  Download Scientific Diagram
Internalization and recycling of Cav1 and Cav2 channel complexes. Cav1... | Download Scientific Diagram

Direct G Protein Modulation of Cav2 Calcium Channels | Pharmacological  Reviews
Direct G Protein Modulation of Cav2 Calcium Channels | Pharmacological Reviews

Involvement of CaV2.2 channels and α2δ‐1 in homeostatic synaptic plasticity  in cultured hippocampal neurons - Pilch - 2022 - The Journal of Physiology  - Wiley Online Library
Involvement of CaV2.2 channels and α2δ‐1 in homeostatic synaptic plasticity in cultured hippocampal neurons - Pilch - 2022 - The Journal of Physiology - Wiley Online Library

CaV2.1 channelopathies | SpringerLink
CaV2.1 channelopathies | SpringerLink

Frontiers | Zebrafish as a Model System for the Study of Severe CaV2.1  (α1A) Channelopathies
Frontiers | Zebrafish as a Model System for the Study of Severe CaV2.1 (α1A) Channelopathies

The Calcium Channel α2δ-2 Subunit Partitions with CaV2.1 into Lipid Rafts  in Cerebellum: Implications for Localization and Function | Journal of  Neuroscience
The Calcium Channel α2δ-2 Subunit Partitions with CaV2.1 into Lipid Rafts in Cerebellum: Implications for Localization and Function | Journal of Neuroscience

CaV2.2 Gates Calcium-Independent but Voltage-Dependent Secretion in  Mammalian Sensory Neurons
CaV2.2 Gates Calcium-Independent but Voltage-Dependent Secretion in Mammalian Sensory Neurons

Cav2.1 - an overview | ScienceDirect Topics
Cav2.1 - an overview | ScienceDirect Topics

Separation of presynaptic Cav2 and Cav1 channel function in synaptic  vesicle exo- and endocytosis by the membrane anchored Ca2+ pump PMCA | PNAS
Separation of presynaptic Cav2 and Cav1 channel function in synaptic vesicle exo- and endocytosis by the membrane anchored Ca2+ pump PMCA | PNAS

Differential regulation of Cav2.2 channel exon 37 variants by alternatively  spliced μ-opioid receptors | Molecular Brain | Full Text
Differential regulation of Cav2.2 channel exon 37 variants by alternatively spliced μ-opioid receptors | Molecular Brain | Full Text

CaV2.2 (N-type) voltage-gated calcium channels are activated by SUMOylation  pathways - ScienceDirect
CaV2.2 (N-type) voltage-gated calcium channels are activated by SUMOylation pathways - ScienceDirect

Synaptotagmin-7 Enhances Facilitation of Cav2.1 Calcium Channels | eNeuro
Synaptotagmin-7 Enhances Facilitation of Cav2.1 Calcium Channels | eNeuro

Synaptotagmin-7 Enhances Facilitation of Cav2.1 Calcium Channels | eNeuro
Synaptotagmin-7 Enhances Facilitation of Cav2.1 Calcium Channels | eNeuro

Review: Cav2.3 R-type Voltage-Gated Ca2+ Channels - Functional Implications  in Convulsive and Non-convulsive Seizure Activity
Review: Cav2.3 R-type Voltage-Gated Ca2+ Channels - Functional Implications in Convulsive and Non-convulsive Seizure Activity

Frontiers | P/Q Type Calcium Channel Cav2.1 Defines a Unique Subset of  Glomeruli in the Mouse Olfactory Bulb
Frontiers | P/Q Type Calcium Channel Cav2.1 Defines a Unique Subset of Glomeruli in the Mouse Olfactory Bulb

CaV2.1 α1 Subunit Expression Regulates Presynaptic CaV2.1 Abundance and  Synaptic Strength at a Central Synapse - ScienceDirect
CaV2.1 α1 Subunit Expression Regulates Presynaptic CaV2.1 Abundance and Synaptic Strength at a Central Synapse - ScienceDirect

Addgene: CaV2.1 (pcDNA6)
Addgene: CaV2.1 (pcDNA6)

Voltage-dependent CaV3.2 and CaV2.2 channels in nociceptive pathways |  SpringerLink
Voltage-dependent CaV3.2 and CaV2.2 channels in nociceptive pathways | SpringerLink

Complex effects on CaV2.1 channel gating caused by a CACNA1A variant  associated with a severe neurodevelopmental disorder | Scientific Reports
Complex effects on CaV2.1 channel gating caused by a CACNA1A variant associated with a severe neurodevelopmental disorder | Scientific Reports

A novel region in the CaV2.1 α1 subunit C-terminus regulates fast synaptic  vesicle fusion and vesicle docking at the mammalian presynaptic active zone  | Max Planck Neuroscience
A novel region in the CaV2.1 α1 subunit C-terminus regulates fast synaptic vesicle fusion and vesicle docking at the mammalian presynaptic active zone | Max Planck Neuroscience

Structures of the R-type human Cav2.3 channel reveal conformational  crosstalk of the intracellular segments | Nature Communications
Structures of the R-type human Cav2.3 channel reveal conformational crosstalk of the intracellular segments | Nature Communications

Anti-CACNA1B (Cav2.2) Antibody | KO Validated | Alomone Labs
Anti-CACNA1B (Cav2.2) Antibody | KO Validated | Alomone Labs

Figures and data in A novel region in the CaV2.1 α1 subunit C-terminus  regulates fast synaptic vesicle fusion and vesicle docking at the mammalian  presynaptic active zone | eLife
Figures and data in A novel region in the CaV2.1 α1 subunit C-terminus regulates fast synaptic vesicle fusion and vesicle docking at the mammalian presynaptic active zone | eLife

CACNA1A (Cav2.1) antibody - BiCell Scientific®
CACNA1A (Cav2.1) antibody - BiCell Scientific®

Differential regulation of Cav2.2 channel exon 37 variants by alternatively  spliced μ-opioid receptors | Molecular Brain | Full Text
Differential regulation of Cav2.2 channel exon 37 variants by alternatively spliced μ-opioid receptors | Molecular Brain | Full Text

CACNA1E (Cav2.3) antibody - BiCell Scientific®
CACNA1E (Cav2.3) antibody - BiCell Scientific®