AbstractNotch receptors regulate fate decisions in many cells. One outcome of Notch signaling is differentiation of bipotential precursors into one cell type versus another. To investigate consequences of Notch1 expression in hematolymphoid progenitors, mice were reconstituted with bone marrow (BM) transduced with retroviruses encoding a constitutively active form of Notch1. Although neither granulocyte or monocyte differentiation were appreciably affected, lymphopoiesis was dramatically altered. As early as 3 weeks following transplantation, mice receiving activated Notch1-transduced BM contained immature CD4+CD8+ T cells in the BM and exhibited a simultaneous block in early B cell lymphopoiesis. These results suggest that Notch1 provides ...
AbstractThe choice between the αβ or γδ T cell fates is influenced by the production of functional, ...
SummaryIn the hematopoietic system, Notch signaling specifies T cell lineage fate, in part through n...
Using the OP9-DL1 system to deliver temporally controlled Notch/Delta signaling, we show that plurip...
AbstractNotch receptors regulate fate decisions in many cells. One outcome of Notch signaling is dif...
Notch signaling regulates many cell fate decisions during development of multi-cellular organisms. S...
AbstractNotch signaling regulates cell fate decisions in multiple lineages. We demonstrate in this r...
AbstractNotch proteins are used repeatedly to direct developmental cell fate decisions in multiple o...
SummaryAccumulating evidence suggests that Notch signaling is active at multiple points during hemat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
Hematopoietic stem cells in the bone marrow give rise to lymphoid progenitors, which subsequently di...
AbstractAlthough Notch receptors are widely expressed during hematopoiesis, their roles outside of t...
Lifelong mammalian hematopoiesis requires continuous generation of mature blood cells that originate...
AbstractNotch-1 signaling is essential for lymphoid progenitors to undergo T cell commitment, but th...
Notch signaling is known to differentially affect the development of lymphoid B and T cell lin-eages...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
AbstractThe choice between the αβ or γδ T cell fates is influenced by the production of functional, ...
SummaryIn the hematopoietic system, Notch signaling specifies T cell lineage fate, in part through n...
Using the OP9-DL1 system to deliver temporally controlled Notch/Delta signaling, we show that plurip...
AbstractNotch receptors regulate fate decisions in many cells. One outcome of Notch signaling is dif...
Notch signaling regulates many cell fate decisions during development of multi-cellular organisms. S...
AbstractNotch signaling regulates cell fate decisions in multiple lineages. We demonstrate in this r...
AbstractNotch proteins are used repeatedly to direct developmental cell fate decisions in multiple o...
SummaryAccumulating evidence suggests that Notch signaling is active at multiple points during hemat...
The Notch signaling pathway regulates many aspects of embryonic development, as well as differentiat...
Hematopoietic stem cells in the bone marrow give rise to lymphoid progenitors, which subsequently di...
AbstractAlthough Notch receptors are widely expressed during hematopoiesis, their roles outside of t...
Lifelong mammalian hematopoiesis requires continuous generation of mature blood cells that originate...
AbstractNotch-1 signaling is essential for lymphoid progenitors to undergo T cell commitment, but th...
Notch signaling is known to differentially affect the development of lymphoid B and T cell lin-eages...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
AbstractThe choice between the αβ or γδ T cell fates is influenced by the production of functional, ...
SummaryIn the hematopoietic system, Notch signaling specifies T cell lineage fate, in part through n...
Using the OP9-DL1 system to deliver temporally controlled Notch/Delta signaling, we show that plurip...