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IID00418
UniprotQ92784
ProteinZinc finger protein DPF3
GeneDPF3
OrganismHomo sapiens
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
378
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seq 254-368 Hetero trimer : Q6NXT2
 Evidence X-RAY 5i3l B Reference
       Region 5i3l B 254-254 disorder
       Region 5i3l B 255-368 order
 Evidence X-RAY 5i3l A Reference
       Region 5i3l A 254-255 disorder
       Region 5i3l A 256-367 order
       Region 5i3l A 368-368 disorder
Seq 254-372 Hetero dimer : IID00062Complex
 Evidence X-RAY 5szc A Reference
       Region 5szc A 254-368 order
 Evidence X-RAY 5szb A Reference
       Region 5szb A 254-368 order
 Evidence NMR 2kwk A Reference
       Region 2kwk A 261-372 order
       Region 2kwk A 371-372 high_rmsd
 Evidence NMR 2kwj A Reference
       Region 2kwj A 261-372 order
       Region 2kwj A 371-372 high_rmsd
Seq 261-372 Hetero dimer : IID00058Complex
 Evidence NMR 2kwo A Reference
       Region 2kwo A 261-372 order
Seq 261-372 Hetero dimer : IID00058Complex
 Evidence NMR 2kwn A Reference
       Region 2kwn A 261-372 order
Seqphosphorylation
    323-323 Phosphoserine
 
Prediction
NeProc
Disorder 1-3,95-300,370-378
Order 4-94,301-369
ProS 95-112,118-157,163-223,244-300,370-378
AlphaFold
Disorder 1-12,84-134,149-194,222-249,252-252,374-378
Order 13-83,135-148,195-221,250-251,253-373
Pfam Hmmer
PF00096 198-221 0.00088
PF00628 261-319 2.2e-11
PF00628 321-366 8.3e-11
SEG 145-164 ,171-189
Function
Function in SwissProt
Belongs to the neuron-specific chromatin remodeling complex (nBAF complex). During neural development a switch from a stem/progenitor to a post-mitotic chromatin remodeling mechanism occurs as neurons exit the cell cycle and become committed to their adult state. The transition from proliferating neural stem/progenitor cells to post-mitotic neurons requires a switch in subunit composition of the npBAF and nBAF complexes. As neural progenitors exit mitosis and differentiate into neurons, npBAF complexes which contain ACTL6A/BAF53A and PHF10/BAF45A, are exchanged for homologous alternative ACTL6B/BAF53B and DPF1/BAF45B or DPF3/BAF45C subunits in neuron-specific complexes (nBAF). The npBAF complex is essential for the self-renewal/proliferative capacity of the multipotent neural stem cells. The nBAF complex along with CREST plays a role regulating the activity of genes essential for dendrite growth (By similarity). Muscle-specific component of the BAF complex, a multiprotein complex involved in transcriptional activation and repression of select genes by chromatin remodeling (alteration of DNA-nucleosome topology). Specifically binds acetylated lysines on histone 3 and 4 (H3K14ac, H3K9ac, H4K5ac, H4K8ac, H4K12ac, H4K16ac). In the complex, it acts as a tissue-specific anchor between histone acetylations and methylations and chromatin remodeling. It thereby probably plays an essential role in heart and skeletal muscle development.