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IID50281
UniprotP46938
ProteinTranscriptional coactivator YAP1
GeneYap1
OrganismMus musculus
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
488
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seq 47-85 Hetero dimer : IID50291Complex
 Evidence X-RAY 3jua F Reference
       Region 3jua F 47-47 disorder
       Region 3jua F 48-83 order
       Region 3jua F 84-85 disorder
 Evidence X-RAY 3jua D Reference
       Region 3jua D 47-47 disorder
       Region 3jua D 48-82 order
       Region 3jua D 83-85 disorder
 Evidence X-RAY 3jua B Reference
       Region 3jua B 47-85 order
Seq 47-85 Hetero dimer : IID50291Complex
 Evidence X-RAY 3jua H Reference
       Region 3jua H 47-64 disorder
       Region 3jua H 65-83 order
       Region 3jua H 84-85 disorder
Seqphosphorylation
    46-46 Phosphoserine
    48-48 Phosphothreonine
    90-90 Phosphoserine
    94-94 Phosphoserine
    356-356 Phosphoserine
    397-397 Phosphothreonine; by MAPK8 and MAPK9
    392-392 Phosphotyrosine; by ABL1
    385-385 Phosphoserine; by CK1
    388-388 Phosphoserine; by CK1
    382-382 Phosphoserine; by LATS1 and LATS2
    373-373 Phosphoserine
    367-367 Phosphoserine
    366-366 Phosphoserine
    95-95 Phosphothreonine
    274-274 Phosphoserine
    352-352 Phosphoserine; by MAPK8 and MAPK9
    149-149 Phosphoserine; by LATS1 and LATS2
    123-123 Phosphoserine
    116-116 Phosphoserine
    113-113 Phosphoserine
    112-112 Phosphoserine
    104-104 Phosphothreonine; by MAPK8 and MAPK9
 
Prediction
NeProc
Disorder 1-178,189-285,314-480
Order 179-188,286-313,481-488
ProS 38-84,102-107,161-178,189-192,218-236,252-257,314-315,326-332,344-361,368-415,423-441,453-480
AlphaFold
Disorder 1-30,32-47,60-67,86-155,193-214,250-285,317-488
Order 31-31,48-59,68-85,156-192,215-249,286-316
Pfam Hmmer
PF00397 158-187 2.8e-13
PF00397 217-246 5e-13
SEG 3-35 ,129-142 ,273-297
Function
Function in SwissProt
Transcriptional regulator which can act both as a coactivator and a corepressor and is the critical downstream regulatory target in the Hippo signaling pathway that plays a pivotal role in organ size control and tumor suppression by restricting proliferation and promoting apoptosis. The core of this pathway is composed of a kinase cascade wherein STK3/MST2 and STK4/MST1, in complex with its regulatory protein SAV1, phosphorylates and activates LATS1/2 in complex with its regulatory protein MOB1, which in turn phosphorylates and inactivates YAP1 oncoprotein and WWTR1/TAZ. Plays a key role in tissue tension and 3D tissue shape by regulating cortical actomyosin network formation. Acts via ARHGAP18, a Rho GTPase activating protein that suppresses F-actin polymerization. Plays a key role in controlling cell proliferation in response to cell contact. Phosphorylation of YAP1 by LATS1/2 inhibits its translocation into the nucleus to regulate cellular genes important for cell proliferation, cell death, and cell migration. The presence of TEAD transcription factors are required for it to stimulate gene expression, cell growth, anchorage-independent growth, and epithelial mesenchymal transition (EMT) induction. Suppresses ciliogenesis via acting as a transcriptional corepressor of the TEAD4 target genes AURKA and PLK1 (By similarity). In conjunction with WWTR1, involved in the regulation of TGFB1-dependent SMAD2 and SMAD3 nuclear accumulation (PubMed:21145499).
Biological Process
Diagram with PDB data
Yap1/Tead4Structural basis of YAP recognition by TEAD4 in the Hippo pathway