Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Notch Signalling Plays a Role in Patterning the Ventral Mesoderm During Early Embryogenesis in Drosophila melanogaster

View through CrossRef
Notch signalling is a critical regulator of multiple developmental processes through its ability to control gene expression and thereby influence cell fate specification and cell proliferation through direct cell–cell communication. Although Notch signalling has been implicated in myogenesis during late embryogenesis, its role in early mesoderm development has been largely unexplored. Endocytosis of the Notch ligand Delta and the Notch receptor extracellular domain, a critical step in Notch pathway activation, has been extensively observed in the ventral mesoderm of the early Drosophila embryo, indicating a potential for Notch signalling activity in this early germ layer. Here, we present evidence that genes critical to mesoderm development require and are responsive to Notch signalling activity. Using a novel light-inducible Optogenetic variant of the Notch intracellular domain (OptoNotch), which affords precise spatial and temporal control over ectopic activation of Notch signalling, in combination with high-resolution fluorescent RNA in situ hybridization and qPCR, we identified a set of mesodermal genes whose expression is directly regulated by Notch signalling. We also provide evidence that Notch signalling indirectly regulates the dorsal–ventral patterning program mediated by the Toll signalling pathway through the Dorsal/Twist/Snail gene network. Our findings demonstrate that Notch signalling regulates ventral mesoderm patterning and is critical for establishing the mesoderm–mesectoderm–ectoderm boundary by regulating gene expression patterns and providing negative feedback on the upstream patterning network.
Title: Notch Signalling Plays a Role in Patterning the Ventral Mesoderm During Early Embryogenesis in Drosophila melanogaster
Description:
Notch signalling is a critical regulator of multiple developmental processes through its ability to control gene expression and thereby influence cell fate specification and cell proliferation through direct cell–cell communication.
Although Notch signalling has been implicated in myogenesis during late embryogenesis, its role in early mesoderm development has been largely unexplored.
Endocytosis of the Notch ligand Delta and the Notch receptor extracellular domain, a critical step in Notch pathway activation, has been extensively observed in the ventral mesoderm of the early Drosophila embryo, indicating a potential for Notch signalling activity in this early germ layer.
Here, we present evidence that genes critical to mesoderm development require and are responsive to Notch signalling activity.
Using a novel light-inducible Optogenetic variant of the Notch intracellular domain (OptoNotch), which affords precise spatial and temporal control over ectopic activation of Notch signalling, in combination with high-resolution fluorescent RNA in situ hybridization and qPCR, we identified a set of mesodermal genes whose expression is directly regulated by Notch signalling.
We also provide evidence that Notch signalling indirectly regulates the dorsal–ventral patterning program mediated by the Toll signalling pathway through the Dorsal/Twist/Snail gene network.
Our findings demonstrate that Notch signalling regulates ventral mesoderm patterning and is critical for establishing the mesoderm–mesectoderm–ectoderm boundary by regulating gene expression patterns and providing negative feedback on the upstream patterning network.

Related Results

Role of Stromal Cell-Mediated Notch Signaling in AML Resistance to Chemotherapy
Role of Stromal Cell-Mediated Notch Signaling in AML Resistance to Chemotherapy
Abstract Introduction: Our group has recently shown that bone marrow-mesenchymal stromal cell (BM-MSCs)-mediated Notch signaling may control survival and chemoresist...
ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
ProNodal acts via FGFR3 to govern duration of Shh expression in the prechordal mesoderm
The secreted glycoprotein Sonic hedgehog (Shh) is expressed in the prechordal mesoderm, where it plays a critical role in induction and patterning of the ventral forebrain. As yet,...
N otch Signalling in Cancer
N otch Signalling in Cancer
Abstract The Notch pathway is an evolutionarily conserved signalling pathway involved in the development of diverse organisms from drosophila to...
Zelda and the evolution of insect metamorphosis
Zelda and the evolution of insect metamorphosis
Abstract In the Endopterygote Drosophila melanogaster , Zelda is a key activator of the zygotic genome during...
Abstract 1566: Notch-1 regulation of the PTEN - mTOR axis in prostate
Abstract 1566: Notch-1 regulation of the PTEN - mTOR axis in prostate
Abstract Prostate cancer affects one in three men over the age of 60. Loss of expression or function of PTEN is the most commonly observed molecular defect in human ...
Abstract 1133: Prevalence of activated NOTCH receptor in solid tumors and chronic lymphocytic leukemia
Abstract 1133: Prevalence of activated NOTCH receptor in solid tumors and chronic lymphocytic leukemia
Abstract Recent reports identified high expression of Notch 1 receptor in various tumors including adenoid cystic carcinomas (ACC). Notch 1 receptor is activated by ...
Dynamics of Notch signalling in the mouse oviduct and uterus during the oestrous cycle
Dynamics of Notch signalling in the mouse oviduct and uterus during the oestrous cycle
The oviduct and uterus undergo extensive cellular remodelling during the oestrous cycle, requiring finely tuned intercellular communication. Notch is an evolutionarily conserved ce...
Pengaruh Suhu Terhadap Siklus Hidup Lalat Buah (Drosophila melanogaster)
Pengaruh Suhu Terhadap Siklus Hidup Lalat Buah (Drosophila melanogaster)
Fruit flies (Drosophila melanogaster) generally have four phases in their life cycle, namely eggs, larvae, pupae and imago. In general, Drosophila melanogaster experiences a life c...

Back to Top