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Developmental and molecular characterization of mutations in the Drosophila-raf serine/threonine protein kinase
M B Melnick1, L A Perkins, M Lee
1Department of Genetics, Howard Hughes Medical Institute, Boston, Massachusetts 02115.
Abstract:
Formation of the tail region of the Drosophila larva requires the activities of the terminal class genes. Genetic and molecular analyses of these genes suggests that localized activation of the receptor tyrosine kinase torso at the posterior egg pole triggers a signal transduction pathway. This pathway, mediated through the serine/threonine protein kinase D-raf and the protein tyrosine phosphatase corkscrew, controls the domains of expression of the transcription factors tailless and huckebein. In this paper, we report the molecular and developmental characterization of mutations in the D-raf gene. We show that mutations that alter conserved residues known to be necessary for kinase activity are associated with a null phenotype, demonstrating that D-raf kinase activity is required for its role in torso signaling. Another mutation, D-rafPB26, which prematurely truncates the kinase domain shows a weaker maternal effect phenotype that is strikingly similar to the corkscrew maternal effect phenotype, suggesting that a lower amount of kinase activity decreases the terminal signaling pathway. Finally, molecular and developmental characterization of two mutations that affect the late D-raf zygotic function(s) implies a novel role for D-raf in cell fate establishment in the eye. One of these mutations, D-rafC110, is associated with a single amino acid change within the putative D-raf regulatory region, while the other, D-rafHM-7, most likely reduces the wild-type amount of D-raf protein.
Insights
D-raf kinase activity is essential for torso signaling during Drosophila development. Mutations reveal D-raf
Area of Science:
- Developmental biology
- Molecular genetics
- Signal transduction pathways
Background:
- Tail formation in Drosophila larvae depends on terminal class genes.
- The torso receptor tyrosine kinase initiates a signaling cascade at the posterior pole.
- This pathway involves D-raf kinase and corkscrew phosphatase, regulating transcription factors tailless and huckebein.
Purpose of the Study:
- To molecularly and developmentally characterize mutations in the D-raf gene.
- To investigate the role of D-raf kinase activity in torso signaling.
- To explore potential novel functions of D-raf in later developmental stages.
Main Methods:
- Genetic analysis of D-raf mutations.
- Molecular characterization of D-raf alleles.
- Developmental analysis of mutant phenotypes.
Main Results:
- Mutations affecting conserved kinase residues result in a null phenotype, confirming D-raf kinase activity is required for torso signaling.
- A mutation causing kinase domain truncation (D-rafPB26) exhibits a maternal effect similar to corkscrew, suggesting reduced kinase activity impacts terminal signaling.
- Two mutations affecting late D-raf zygotic functions, including one in the regulatory region (D-rafC110), suggest a novel role in eye cell fate establishment.
Conclusions:
- D-raf kinase activity is indispensable for the torso signaling pathway.
- Partial loss of D-raf kinase function can phenocopy corkscrew mutations.
- D-raf plays a previously unrecognized role in Drosophila eye development.