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IID50426
UniprotP08413
ProteinCalcium/calmodulin-dependent protein kinase type II subunit beta
GeneCamk2b
OrganismRattus norvegicus
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
542
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seq 291-315 Hetero octamer : IID00706Complex
 Evidence X-RAY 6hcs B Reference
       Region 6hcs B 291-293 disorder
       Region 6hcs B 294-312 order
       Region 6hcs B 313-315 disorder
 Evidence X-RAY 6hcs D Reference
       Region 6hcs D 291-293 disorder
       Region 6hcs D 294-314 order
       Region 6hcs D 315-315 disorder
 Evidence X-RAY 6hcs F Reference
       Region 6hcs F 291-293 disorder
       Region 6hcs F 294-311 order
       Region 6hcs F 312-315 disorder
 Evidence X-RAY 6hcs H Reference
       Region 6hcs H 291-293 disorder
       Region 6hcs H 294-311 order
       Region 6hcs H 312-315 disorder
SeqProS predicted 300-314 This region is predicted to be disordered by NeProc and AlphaFold (pLDDT < 68.5). Hetero octamer : IID00706Complex
       Region 6hcs B 294-312 order
       Region 6hcs D 294-314 order
       Region 6hcs F 294-311 order
       Region 6hcs H 294-311 order
 
Prediction
NeProc
Disorder 1-4,294-444,536-542
Order 5-293,445-467,473-535
ProS 294-314,343-346,381-392,404-420,425-444,541-542
AlphaFold
Disorder 1-7,23-24,300-404,468-473,537-542
Order 8-22,25-299,405-467,474-536
SEG 320-336
Function
Function in SwissProt
Calcium/calmodulin-dependent protein kinase that functions autonomously after Ca(2+)/calmodulin-binding and autophosphorylation, and is involved in dendritic spine and synapse formation, neuronal plasticity and regulation of sarcoplasmic reticulum Ca(2+) transport in skeletal muscle (PubMed:12873385, PubMed:15312654). In neurons, plays an essential structural role in the reorganization of the actin cytoskeleton during plasticity by binding and bundling actin filaments in a kinase-independent manner. This structural function is required for correct targeting of CaMK2A, which acts downstream of NMDAR to promote dendritic spine and synapse formation and maintain synaptic plasticity which enables long-term potentiation (LTP) and hippocampus-dependent learning. In developing hippocampal neurons, promotes arborization of the dendritic tree and in mature neurons, promotes dendritic remodeling. Also regulates the migration of developing neurons. Participates in the modulation of skeletal muscle function in response to exercise (PubMed:17272343). In slow-twitch muscles, is involved in regulation of sarcoplasmic reticulum (SR) Ca(2+) transport and in fast-twitch muscle participates in the control of Ca(2+) release from the SR through phosphorylation of triadin, a ryanodine receptor-coupling factor, and phospholamban (PLN/PLB), an endogenous inhibitor of SERCA2A/ATP2A2. In response to interferon-gamma (IFN-gamma) stimulation, catalyzes phosphorylation of STAT1, stimulating the JAK-STAT signaling pathway (PubMed:11972023). Phosphorylates reticulophagy regulator RETREG1 at 'Ser-134' under endoplasmic reticulum stress conditions which enhances RETREG1 oligomerization and its membrane scission and reticulophagy activity (By similarity).
Biological Process
Diagram with PDB data
Camk2b/CALM1Crystal structure of CaM-peptide complex containing AzF at position 108