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1. T-type Ca2+ and persistent Na+ currents synergistically elevate ventral, not dorsal, entorhinal cortical stellate cell excitability

2. Rab11-dependent recycling of calcium channels is mediated by auxiliary subunit α2δ-1 but not α2δ-3

3. FMRP regulates presynaptic localization of neuronal voltage gated calcium channels

4. Disruption of the Key Ca2+ Binding Site in the Selectivity Filter of Neuronal Voltage-Gated Calcium Channels Inhibits Channel Trafficking

5. The α2δ-like Protein Cachd1 Increases N-type Calcium Currents and Cell Surface Expression and Competes with α2δ-1

6. Voltage-gated calcium channel α2δ subunits: an assessment of proposed novel roles [version 1; referees: 2 approved]

7. A CaV2.1 N-terminal fragment relieves the dominant-negative inhibition by an Episodic ataxia 2 mutant

8. T-type Ca2+ channels are required for enhanced sympathetic axon growth by TNFα reverse signalling

9. Nerve injury increases native CaV2.2 trafficking in dorsal root ganglion mechanoreceptors

11. Voltage-gated calcium channel α 2δ subunits: an assessment of proposed novel roles [version 1; referees: 2 approved]

13. Biallelic CACNA2D1 loss-of-function variants cause early-onset developmental epileptic encephalopathy

14. Capsaicin-Induced Endocytosis of Endogenous Presynaptic CaV2.2 in DRG-Spinal Cord Co-Cultures Inhibits Presynaptic Function

16. Involvement of Ca

17. Involvement of CaV2.2 channels and α2δ-1 in hippocampal homeostatic synaptic plasticity

18. ADAM17 Mediates Proteolytic Maturation of Voltage-Gated Calcium Channel Auxiliary α

19. Introduction to the Theme 'Ion Channels and Neuropharmacology: From the Past to the Future'

21. Calcium Channel Diversity

22. T-type Ca2+ and persistent Na+ currents synergistically elevate ventral, not dorsal, entorhinal cortical stellate cell excitability

23. Amino acid sensor conserved from bacteria to humans

24. Identification that ADAM17 mediates proteolytic maturation of calcium channel auxiliary α2δ subunits, and enables calcium current enhancement

25. How Postdoctoral Research in Paul Greengard's Laboratory Shaped My Scientific Career, Although I Never Did Another Phosphorylation Assay

26. Functions of Presynaptic Voltage-gated Calcium Channels

27. Presynaptic calcium channels: specialized control of synaptic neurotransmitter release

28. Fight or flight: The culprit is lurking in the neighbourhood

29. FMRP regulates presynaptic localization of neuronal voltage gated calcium channels

30. Voltage-gated calcium channel blockers for psychiatric disorders: genomic reappraisal

31. Ablation of α

32. Genetic disruption of voltage-gated calcium channels in psychiatric and neurological disorders

33. Voltage-gated calcium channels: their discovery, function and importance as drug targets

34. Proteolytic maturation of α2δ controls the probability of synaptic vesicular release

35. Proteolytic maturation of α

36. The Physiology, Pathology, and Pharmacology of Voltage-Gated Calcium Channels and Their Future Therapeutic Potential

37. The Upregulation of α2δ-1 Subunit Modulates Activity-Dependent Ca2+Signals in Sensory Neurons

38. LRP1 influences trafficking of N-type calcium channels via interaction with the auxiliary α2δ-1 subunit

40. The α2δ subunits of voltage-gated calcium channels

42. Proteolytic maturation of α2δ represents a checkpoint for activation and neuronal trafficking of latent calcium channels

43. Posttranslational Proteolytic Cleavage of α2δ Subunits: Functional Implications for High Voltage-Gated Calcium Channels

44. Calcium Currents Are Enhanced by α2δ-1 Lacking Its Membrane Anchor

45. Calcium channel auxiliary α2δ and β subunits: trafficking and one step beyond

46. α2δ expression sets presynaptic calcium channel abundance and release probability

47. Mutant PrP Suppresses Glutamatergic Neurotransmission in Cerebellar Granule Neurons by Impairing Membrane Delivery of VGCC α2δ-1 Subunit

48. Chronic pregabalin inhibits synaptic transmission between rat dorsal root ganglion and dorsal horn neurons in culture

49. β-Subunits Promote the Expression of CaV2.2 Channels by Reducing Their Proteasomal Degradation*

50. A new look at calcium channel α2δ subunits

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