Q15878: Voltage-dependent R-type calcium channel subunit alpha-1E (CACNA1E)

Voltage-dependent R-type calcium channel subunit alpha-1E (CACNA1E) is a 2313-residue protein from Homo sapiens. This is its AlphaFold structure prediction, created 1 Aug 2025. UniProt accession: Q15878.

Gene
CACNA1E
Organism
Homo sapiens
Length
2313 residues
Mean pLDDT
59.9
Model
AF-Q15878-F1 v6
Model created
1 Aug 2025
PDB structures
5

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Model confidence (pLDDT)

The mean pLDDT of this model is 59.9 (low overall). pLDDT is AlphaFold's per-residue confidence score from 0 to 100. In MolViewer, choose the B-factor color scheme to color the model by pLDDT, because AlphaFold stores it in the B-factor column.

pLDDT bandMeaningShare of residues
Above 90Very high: backbone and side chains are usually accurate6%
70 to 90Confident: backbone generally right42%
50 to 70Low: treat with caution13%
Below 50Very low: often disordered regions39%

What pLDDT means and how to read it

Function

Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells (PubMed:30343943). They are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. The isoform alpha-1E gives rise to R-type calcium currents. R-type calcium channels belong to the 'high-voltage activated' (HVA) group and are blocked by nickel. They are however insensitive to dihydropyridines (DHP). Calcium channels containing alpha-1E subunit could be involved in the modulation of firing patterns of neurons which is important for information processing

Subunit structure

Interacts with EFHC1. Voltage-dependent calcium channels are multisubunit complexes, consisting of alpha-1, alpha-2, beta and delta subunits in a 1:1:1:1 ratio. The channel activity is directed by the pore-forming and voltage-sensitive alpha-1 subunit. In many cases, this subunit is sufficient to generate voltage-sensitive calcium channel activity. The auxiliary subunits beta and alpha-2/delta…

Subcellular location

Membrane

Disease associations

Experimental structures in the PDB

Compare the prediction with experimentally determined structures of the same protein:

PDB IDMethodResolutionChains and residues
3BXLX-ray2.3 ÅB=1867-1887
7YG5EM3.0 ÅA=1-2313
7XLQEM3.1 ÅA=1-2313
8EPLEM3.1 ÅA=1-2313
8EPMEM3.1 ÅA=1-2313

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