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FLASH GENE
Symbol FZD7 contributors: mct/ - updated : 10-04-2013
HGNC name frizzled homolog 7 (Drosophila)
HGNC id 4045
RNA
TRANSCRIPTS type messenger
identificationnb exonstypebpproduct
ProteinkDaAAspecific expressionYearPubmed
1 - 3851 63 574 - 2008 18681827
EXPRESSION
Type widely
   expressed in (based on citations)
organ(s)
SystemOrgan level 1Organ level 2Organ level 3Organ level 4LevelPubmedSpeciesStageRna symbol
Cardiovascularheart    
Digestivestomach    
Endocrinepancreas    
Nervousbrain    
Reproductivefemale systemovary  highly
Respiratorylung    
Urinarykidney    
tissue
SystemTissueTissue level 1Tissue level 2LevelPubmedSpeciesStageRna symbol
Blood / hematopoieticbone marrow  highly Homo sapiensAdult
Muscularstriatumskeletal  
cells
SystemCellPubmedSpeciesStageRna symbol
Lymphoid/Immunelymphocyte Homo sapiensAdult
cell lineage
cell lines squamous cell esophageal carcinoma cell lines
fluid/secretion
at STAGE
physiological period fetal, pregnancy
Text placenta, kidney, lung
PROTEIN
PHYSICAL PROPERTIES
STRUCTURE
motifs/domains
  • a conserved N-terminal extracellular cysteine-rich domain that interacts with Wnts
  • seven transmembrane segments (7TM)
  • a C terminal hydrophilic segment, comprising the S/T-X-X-X-W motif
  • HOMOLOGY
    interspecies homolog to Drosophila frizzled polarity gene
    Homologene
    FAMILY
  • G protein coupled receptor superfamily
  • CATEGORY receptor
    SUBCELLULAR LOCALIZATION     plasma membrane
    basic FUNCTION
  • exhibiting characteristics of a WNT receptor
  • embryonic stem cell-specific surface antigen with a likely important role in the maintenance of embryonic stem cell self-renewal capacity
  • activates the canonical Wnt pathway in colon cancer cells despite the presence of APC or CTNNB1 mutation
  • playing a pivotal role in morphology transitions that are associated with colon tumor initiation and progression
  • novel ES (embryonic stem) cell-specific surface antigen with a likely important role in the maintenance of ES cell self-renewal capacity
  • may be involved in enhancement of survival, invasion and metastatic capabilities of colon cancer cells through non-canonical Wnt signalling pathways as well as the canonical pathway
  • Wnt receptor most commonly upregulated in a variety of cancers
  • plays an important role in stem cell biology and cancer development and progression
  • FZD2 and FZD7 are competent to signal via the canonical pathway
  • CELLULAR PROCESS
    PHYSIOLOGICAL PROCESS
    PATHWAY
    metabolism
    signaling
    a component ROR2/FZD7 receptor complex plays an important role in WNT5a/RAC1/AP-1 pathway by regulating polymerization of DVL2
    INTERACTION
    DNA
    RNA
    small molecule
    protein
  • ROR2 can associate with FZD7 via its extracellular cysteine-rich domain to form a receptor complex that is required for the regulation of Dvl and activation of the AP-1 promoter after WNT5A stimulation
  • WNT-11/FZD7 controls cell adhesion by forming separate adhesion-modulating complexes (AMCs) with the paraxial protocadherin PCDH8 and C-cadherin via distinct FZD7 interaction domains
  • genetic interactions between FZD2, FZD7 and VANGL2, DVL3 and WNT genes reflect interactions among different signaling pathways in developmental processes that are highly sensitive to perturbations in Frizzled signaling
  • cell & other
    REGULATION
    ASSOCIATED DISORDERS
    corresponding disease(s)
    Other morbid association(s)
    TypeGene ModificationChromosome rearrangementProtein expressionProtein Function
    tumoral     --over  
    in primary gastric and colorectal cancer
    tumoral     --low  
    in colon cancer
    Susceptibility
    Variant & Polymorphism
    Candidate gene
    Marker
  • promise as a biomarker for triple negative breast cancer
  • Therapy target
    SystemTypeDisorderPubmed
    cancerdigestivecolon
    FZD7-siRNA may be used as a therapeutic reagent for colorectal cancer
    cancerreproductivebreast
    promise as a potential therapeutic target for triple negative breast cancer
    cancer  
    targeted inhibition of FZD7 represents a rational and promising new approach for cancer therapy
    ANIMAL & CELL MODELS