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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.

Development (Cambridge, England)
|May 1, 1993
PubMed

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.

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