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Juarez-Uribe, R. A.

Publications and source records attributed to Juarez-Uribe, R. A..

2 recordsLinked to original sources

Regeneration can take place across Drosophila compartments or segments with different Hox gene expression

Regeneration in Drosophila has primarily been studied in imaginal discs, which are organized into distinct compartments defined by strict lineage boundaries. While cells typically do not cross these borders, regeneration can bridge them to restore the original organ specification, which is determined by Hox genes. Although differences in Hox gene expression are known to segregate cell populations, the role of such differences as a potential barrier to regeneration remains unclear. We investigated this by analyzing two experimental settings: the analia (derived from the Hox-compound genital disc) and haltere discs with mutations in Ultrabithorax regulatory regions (bithorax or postbithorax). Our findings demonstrate that Hox gene differences are not an absolute impediment to regeneration across segments or compartments. However, we observed occasional regenerative limits, which were non-specifically enhanced in the postbithorax background.

developmental biology↗

The Homeodomain-interacting protein kinase Hipk promotes apoptosis by stabilizing the active form of Dronc

Members of the evolutionarily conserved homeodomain-interacting protein kinase (Hipk) family play a critical role in regulating essential signalling pathways involved in growth, differentiation, and apoptosis. While vertebrates have multiple hipk genes, Drosophila contains a single hipk ortholog, what facilitates functional analysis. We find that hipk is necessary for the stabilization of the initiator caspase Dronc, thus enhancing the two Dronc activities in apoptotic scenarios: the induction of the caspase cascade, and the reinforcement of JNK signalling pathway. Conversely, our data suggest that Dronc also raises the expression levels of Hipk, thereby reinforcing the apoptotic response. These findings significantly enhance our understanding of caspase regulation and position Hipk as a promising target for modulating caspase activity in a variety of biological contexts.

developmental biology↗