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FLASH GENE
Symbol JAG1 contributors: mct - updated : 03-07-2019
HGNC name jagged 1
HGNC id 6188
ASSOCIATED DISORDERS
corresponding disease(s) ALGS , ICHD
Other morbid association(s)
TypeGene ModificationChromosome rearrangementProtein expressionProtein Function
constitutional     --over  
in proliferating hemangiomas
constitutional germinal mutation     loss of function
silencing mutations in JAG1 gene may play crucial roles in the pathogenesis of Tetralogy of Fallot
tumoral     --over  
significant over-expression of ligand JAG1 in the vast majority of Medulloblastoma (MB)
Susceptibility
Variant & Polymorphism
Candidate gene candidate for BMD regulation in different ethnic groups, and it is a potential key factor for fracture pathogenesis
Marker
  • JAG1/NOTCH3 is expected to be an important signaling pathway for TNBC (Triple-negative breast cancer) progression
  • Therapy target
    SystemTypeDisorderPubmed
    cancerdigestivecolon
    inhibitors for Jagged1-mediated Notch activation [i.e., inhibitors of glycosil-transferases that modulate Notch/Notch-ligand interaction would be a new promising strategy for Colorectal cancer therapy
    osteoarticular  
    transient NOTCH1 inhibition by soluble JAG1 could be used to enhance Placenta-derived mesenchymal stromal cells (PMSCs) survival and chondrogenic differentiation, thereby increasing the therapeutic potential of PMSCs for cartilage regeneration
    cancerdigestive 
    JAG1-NOTCH1 interference provides therapeutic benefit in a subset of colorectal cancer and FAP syndrome patients
    cancerangiogenesis 
    JAG1/NOTCH3 is expected to be a potential target for TNBC neovascularization therapy
    neuromuscularmyopathy 
    JAG1 may represent a target for DMD therapy in a dystrophin-independent manner
    cancerbrain 
    JAG1 mediates pro-proliferative signals via activation of NOTCH2 receptor and induction of HES1 expression, thus representing an attractive therapeutic targetin medulloblastomas
    ANIMAL & CELL MODELS
  • endothelial-specific deletion of Jag1 leads to cardiovascular defects in both embryonic and adult mice that are reminiscent of those in Alagille syndrome