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Relationship: 2485
Title
GSK3beta inactivation leads to Repression of Gbx2 expression
Upstream event
Downstream event
AOPs Referencing Relationship
| AOP Name | Adjacency | Weight of Evidence | Quantitative Understanding | Point of Contact | Author Status | OECD Status |
|---|---|---|---|---|---|---|
| GSK3beta inactivation leading to increased mortality via defects in developing inner ear | adjacent | High | Low | Cataia Ives (send email) | Open for citation & comment |
Taxonomic Applicability
Sex Applicability
| Sex | Evidence |
|---|---|
| Unspecific | High |
Life Stage Applicability
| Term | Evidence |
|---|---|
| All life stages | High |
Wnt signaling is implicated in anteroposterior (AP) axis patterning and midbrain specification in both animal and human systems. GSK3 is a key enzyme mediating the canonical Wnt signaling. Inhibition of GSK3b (one of the isoforms of GSK3) leads to activation of canonical Wnt signal pathway (Grassilli et al., 2014). Gbx2 is one of the representative AP markers and is downregulated in activation of Wnt signal pathway (GSK3b inhibition) (Kim et al., 2018).
| ID | Experimental Design | Species | Upstream Observation | Downstream Observation | Citation (first author, year) | Notes |
|---|
| Title | First Author | Biological Plausibility |
Dose Concordance |
Temporal Concordance |
Incidence Concordance |
|---|
Biological Plausibility
Dose Concordance Evidence
Temporal Concordance Evidence
Incidence Concordance Evidence
Uncertainties and Inconsistencies
No Data.
No Data.
No Data.
Response-response Relationship
No Data.
Time-scale
Gbx2 begins to express in telencephalon approximately 14-18hpf (Wang et al., 2018).
Known Feedforward/Feedback loops influencing this KER
No Data.
Evidence for this KER is provided for zebrafish (Wang et al., 2018) and humans (Grassilli et al., 2014; Kim et al., 2018).