P00517: cAMP-dependent protein kinase catalytic subunit alpha (PRKACA)

cAMP-dependent protein kinase catalytic subunit alpha (PRKACA) is a 351-residue protein from Bos taurus. This is its AlphaFold structure prediction, created 1 Aug 2025. UniProt accession: P00517.

Gene
PRKACA
Organism
Bos taurus
Length
351 residues
Mean pLDDT
95.6
Model
AF-P00517-F1 v6
Model created
1 Aug 2025
PDB structures
96

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Model confidence (pLDDT)

The mean pLDDT of this model is 95.6 (very high 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 accurate94%
70 to 90Confident: backbone generally right2%
50 to 70Low: treat with caution4%
Below 50Very low: often disordered regions0%

What pLDDT means and how to read it

Function

Phosphorylates a large number of substrates in the cytoplasm and the nucleus. Phosphorylates CDC25B, ABL1, NFKB1, CLDN3, histone H1.4 (H1-4), PSMC5/RPT6, PJA2, RYR2, RORA, SLC6A6, SOX9, UHRF1 and VASP. Regulates the abundance of compartmentalized pools of its regulatory subunits through phosphorylation of PJA2 which binds and ubiquitinates these subunits, leading to their subsequent proteolysis. RORA is activated by phosphorylation. Required for glucose-mediated adipogenic differentiation increase and osteogenic differentiation inhibition from osteoblasts (By similarity). Involved in chondrogenesis by mediating phosphorylation of SOX9 (By similarity). Involved in the regulation of…

Subunit structure

A number of inactive tetrameric holoenzymes are produced by the combination of homo- or heterodimers of the different regulatory subunits associated with two catalytic subunits. cAMP causes the dissociation of the inactive holoenzyme into a dimer of regulatory subunits bound to four cAMP and two free monomeric catalytic subunits. Activates cAMP-sensitive PKAI and PKAII holoenzymes by interacting…

Subcellular location

Cytoplasm, Cell membrane, Membrane, Nucleus, Mitochondrion

Experimental structures in the PDB

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

PDB IDMethodResolutionChains and residues
4Z84X-ray1.55 ÅA=1-351
4C38X-ray1.58 ÅA=1-351
1XH8X-ray1.6 ÅA=2-351
5VHBX-ray1.61 ÅA=1-351
1XH9X-ray1.64 ÅA=2-351
3ZO4X-ray1.65 ÅA=1-351
4C33X-ray1.7 ÅA=1-351
4C37X-ray1.7 ÅA=1-351
8SF8X-ray1.7 ÅA=1-351
4C34X-ray1.78 ÅA=1-351
3KKVX-ray1.8 ÅA=2-351
4Z83X-ray1.8 ÅE=2-351
2GFCX-ray1.87 ÅA=2-351
2GNGX-ray1.87 ÅA=2-351
6E99X-ray1.88 ÅA=1-351
1Q8UX-ray1.9 ÅA=2-351
1XH6X-ray1.9 ÅA=2-351
2F7XX-ray1.9 ÅE=1-351
4AXAX-ray1.9 ÅA=1-351
4IE9X-ray1.92 ÅA=1-351

Showing 20 of 96 experimental structures (best resolution first).

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