Entity Detail — Knowledge Graph Node
This page aggregates everything SciDEX knows about DDR2: its mechanistic relationships (Knowledge Graph edges), hypotheses targeting it, analyses mentioning it, and supporting scientific papers. The interactive graph below shows its immediate neighbors. All content is AI-synthesized from peer-reviewed literature.
Gene: DDR2 encodes a receptor tyrosine kinase involved in neuronal survival, collagen signaling, and Parkinson's disease risk.
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| Gene Symbol | DDR2 |
| Full Name | Discoidin Domain Receptor 2 |
| Aliases | TKT, NTRKR3 |
| Chromosome | 1q23.3 |
| Protein Type | Receptor |
| Function | Collagen binding induces DDR2 autophosphorylation and downstream signaling through |
| Primary Expression | Brain, cartilage, bone, lung, kidney |
| Amino Acids | 896 aa |
| Pathways | MAPK pathway, PI3K |
| UniProt ID | Q16832 |
| NCBI Gene ID | 4921 |
| Ensembl ID | ENSG00000137337 |
| GeneCards | DDR2 |
| Human Protein Atlas | DDR2 |
| Extracellular domain | Contains a DS (discoidin) domain that binds collagen |
| Associated Diseases | Parkinson's disease |
| Databases | GeneCardsHPASTRING |
Knowledge base pages for this entity
graph TD
DDR2["DDR2"]
neurodegeneration["neurodegeneration"]
DDR2 -->|"implicated_in"| neurodegeneration
style DDR2 fill:#4a1a6b,stroke:#4fc3f7,stroke-width:2px,color:#e0e0e0| Target | Relation | Type | Str |
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| Source | Relation | Type | Str |
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Hypotheses where this entity is a therapeutic target
| Hypothesis | Score | Disease | Analysis |
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Scientific analyses that reference this entity
No analyses mention this entity
Experimental studies targeting or related to this entity
| Experiment | Type | Disease | Score | Feasibility | Model | Status | Est. Cost |
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| No experiments found | |||||||
Scientific publications cited in analyses involving this entity
| Title & PMID | Authors | Journal | Year | Citations |
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Multi-agent debates referencing this entity
No debates reference this entity
Hypotheses and analyses mentioning DDR2 in their description or question text
No additional research found