Notch signaling regulates many cell fate decisions during development of multi-cellular organisms. Signals initiated by Notch influence a wide variety of processes that include lineage specification, cell survival and proliferation, and border formation. During development of the immune system, Notch has been shown to influence the fate of both hematopoietic stem cells (HSCs) and committed progenitors. Notch appears to play an especially important role in the development of cells that mediate acquired immunity where Notch influences multiple aspects of T and B cell development. In this review, we will focus on the potential functions of Notch signaling during lymphoid development
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
AbstractNotch proteins are used repeatedly to direct developmental cell fate decisions in multiple o...
The Notch family of evolutionarily conserved proteins regulates a broad spectrum of cell-fate decisi...
Notch signaling plays a preeminent role during development in not only regulating cell fate decision...
Abstract: Notch signaling plays a preeminent role during development in not only regulating cell fat...
Abstract: Notch signaling plays a preeminent role during development in not only regulating cell fat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
AbstractCell fate decisions in metazoans are regulated by Notch signals. During lymphoid development...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
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...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
AbstractNotch proteins are used repeatedly to direct developmental cell fate decisions in multiple o...
The Notch family of evolutionarily conserved proteins regulates a broad spectrum of cell-fate decisi...
Notch signaling plays a preeminent role during development in not only regulating cell fate decision...
Abstract: Notch signaling plays a preeminent role during development in not only regulating cell fat...
Abstract: Notch signaling plays a preeminent role during development in not only regulating cell fat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
AbstractCell fate decisions in metazoans are regulated by Notch signals. During lymphoid development...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
International audienceThe role of Notch in the immune system was first described in the late 90s. Re...
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...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
AbstractNotch proteins are used repeatedly to direct developmental cell fate decisions in multiple o...
The Notch family of evolutionarily conserved proteins regulates a broad spectrum of cell-fate decisi...