Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular development. Initially identified in Drosophila wing morphogenesis, Notch signaling has since been demonstrated to play pivotal roles in governing mammalian cellular development in a large variety of cell types. Indeed, abolishing Notch constituents in mouse models result in embryonic lethality, demonstrating that Notch signaling is critical for development and differentiation. In this review, we focus on the crucial role of Notch signaling in governing embryogenesis and differentiation of multiple progenitor cell types. Using hematopoiesis as a diverse cellular model, we highlight the role of Notch in regulating the cell fate of common lymphoid progen...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
Drosophila Larval hematopoiesis takes place at the lymph gland, where myeloid-like progenitors diffe...
Notch proteins are used repeatedly to direct developmental cell fate decisions in multiple organs. D...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
The evolutionarily conserved Notch signaling pathway regulates a broad spectrum of cell fate decisio...
Notch signaling regulates many cell fate decisions during development of multi-cellular organisms. S...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
Notch signaling plays multiple roles during early hematopoiesis and T cell development. Notch signal...
AbstractCell fate decisions in metazoans are regulated by Notch signals. During lymphoid development...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
Notch signaling plays a preeminent role during development in not only regulating cell fate decision...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
Drosophila Larval hematopoiesis takes place at the lymph gland, where myeloid-like progenitors diffe...
Notch proteins are used repeatedly to direct developmental cell fate decisions in multiple organs. D...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
The evolutionarily conserved Notch signaling pathway regulates a broad spectrum of cell fate decisio...
Notch signaling regulates many cell fate decisions during development of multi-cellular organisms. S...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
The Notch signaling pathway is a highly conserved mode of intercellular communication used extensive...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
Notch signaling plays multiple roles during early hematopoiesis and T cell development. Notch signal...
AbstractCell fate decisions in metazoans are regulated by Notch signals. During lymphoid development...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
Notch signaling plays a preeminent role during development in not only regulating cell fate decision...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
Drosophila Larval hematopoiesis takes place at the lymph gland, where myeloid-like progenitors diffe...
Notch proteins are used repeatedly to direct developmental cell fate decisions in multiple organs. D...