Reciprocal regulatory interactions between the Notch and Ras signaling pathways in the Drosophila embryonic mesoderm Journal Article


Authors: Carmena, A.; Buff, E.; Halfon, M. S.; Gisselbrecht, S.; Jiménez, F.; Baylies, M. K.; Michelson, A. M.
Article Title: Reciprocal regulatory interactions between the Notch and Ras signaling pathways in the Drosophila embryonic mesoderm
Abstract: Convergent intercellular signals must be precisely integrated in order to elicit specific biological responses. During specification of muscle and cardiac progenitors from clusters of equivalent cells in the Drosophila embryonic mesoderm, the Ras/MAPK pathway - activated by both epidermal and fibroblast growth factor receptors - functions as an inductive cellular determination signal, while lateral inhibition mediated by Notch antagonizes this activity. A critical balance between these signals must be achieved to enable one cell of an equivalence group to segregate as a progenitor while its neighbors assume a nonprogenitor identity. We have investigated whether these opposing signals directly interact with each other, and we have examined how they are integrated by the responding cells to specify their unique fates. Our findings reveal that Ras and Notch do not function independently; rather, we have uncovered several modes of cross-talk between these pathways. Ras induces Notch, its ligand Delta, and the epidermal growth factor receptor antagonist, Argos. We show that Delta and Argos then synergize to nonautonomously block a positive autoregulatory feedback loop that amplifies a fate-inducing Ras signal. This feedback loop is characterized by Ras-mediated upregulation of proximal components of both the epidermal and fibroblast growth factor receptor pathways. In turn, Notch activation in nonprogenitors induces its own expression and simultaneously suppresses both Delta and Argos levels, thereby reinforcing a unidirectional inhibitory response. These reciprocal interactions combine to generate the signal thresholds that are essential for proper specification of progenitors and nonprogenitors from groups of initially equivalent cells. © 2002 Elsevier Science (USA).
Keywords: immunohistochemistry; signal transduction; epidermal growth factor; mitogen activated protein kinase; controlled study; protein expression; unclassified drug; nonhuman; animal cell; phenotype; animals; animal tissue; map kinase signaling system; protein protein interaction; epidermal growth factor receptor; membrane proteins; notch receptor; cell fate; drosophila; stem cell; embryo, nonmammalian; regulatory mechanism; receptors, notch; stem cells; ras protein; trans-activators; feedback system; ras proteins; mesoderm; drosophila proteins; heart; ras; fibroblast growth factor; cardiogenesis; heart development; autoregulation; muscle, skeletal; muscle development; notch; fibroblast growth factor receptor; egf receptor; myogenesis; signal integration; priority journal; article; fgf receptor; cell fate specification; drosophila development; equivalence group; argos; epidermal growth factor antagonist
Journal Title: Developmental Biology
Volume: 244
Issue: 2
ISSN: 0012-1606
Publisher: Elsevier Inc.  
Date Published: 2002-04-15
Start Page: 226
End Page: 242
Language: English
DOI: 10.1006/dbio.2002.0606
PUBMED: 11944933
PROVIDER: scopus
DOI/URL:
Notes: Export Date: 14 November 2014 -- Source: Scopus
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  1. Mary K Baylies
    85 Baylies