AbstractNotch proteins influence cell fate decisions in many developmental systems. During lymphoid development, Notch1 signaling is essential to direct a bipotent T/B precursor toward the T cell fate, but the role of Notch1 at later stages of T cell development remains controversial. We have recently reported that tissue-specific inactivation of Notch1 in immature (CD44− CD25+) thymocytes does not affect subsequent T cell development. Here, we demonstrate that loss of Notch1 signaling at an earlier (CD44+CD25+) developmental stage results in severe perturbation of αβ but not γδ lineage development. Immature Notch1−/− thymocytes show impaired VDJβ rearrangement and aberrant pre-TCR-independent survival. Collectively, our data demonstrate th...
AbstractNotch is a transmembrane receptor that controls cell fate decisions in Drosophila and whose ...
Notch signalling is a critical mediator of T cell development. However, while this signalling pathwa...
AbstractNotch proteins are cell surface receptors that mediate developmental cell specification even...
Notch proteins influence cell fate decisions in many developmental systems. During lymphoid developm...
AbstractNotch proteins influence cell fate decisions in many developmental systems. During lymphoid ...
Notch proteins influence cell-fate decisions in many developing systems. Several gain-of-function st...
SummaryNotch1 signaling is required for T cell development and has been implicated in fate decisions...
AbstractNotch signaling regulates cell fate decisions in multiple lineages. We demonstrate in this r...
AbstractThe choice between the αβ or γδ T cell fates is influenced by the production of functional, ...
Notch proteins influence cell-fate decisions in many developmental systems. Gain-of-function studies...
Notch signaling is the dominant intercellular signaling input during the earliest stages of T cell d...
T-cell development in the postnatal thymus is contingent on the successful recruitment of bone marro...
Notch signaling is absolutely required for beta-selection during mouse T-cell development, both for ...
T lineage development takes place outside the bone marrow (BM) in a dedicated organ, the thymus. Con...
AbstractThe Notch receptor and its ligands are involved in many developmental processes. They are hi...
AbstractNotch is a transmembrane receptor that controls cell fate decisions in Drosophila and whose ...
Notch signalling is a critical mediator of T cell development. However, while this signalling pathwa...
AbstractNotch proteins are cell surface receptors that mediate developmental cell specification even...
Notch proteins influence cell fate decisions in many developmental systems. During lymphoid developm...
AbstractNotch proteins influence cell fate decisions in many developmental systems. During lymphoid ...
Notch proteins influence cell-fate decisions in many developing systems. Several gain-of-function st...
SummaryNotch1 signaling is required for T cell development and has been implicated in fate decisions...
AbstractNotch signaling regulates cell fate decisions in multiple lineages. We demonstrate in this r...
AbstractThe choice between the αβ or γδ T cell fates is influenced by the production of functional, ...
Notch proteins influence cell-fate decisions in many developmental systems. Gain-of-function studies...
Notch signaling is the dominant intercellular signaling input during the earliest stages of T cell d...
T-cell development in the postnatal thymus is contingent on the successful recruitment of bone marro...
Notch signaling is absolutely required for beta-selection during mouse T-cell development, both for ...
T lineage development takes place outside the bone marrow (BM) in a dedicated organ, the thymus. Con...
AbstractThe Notch receptor and its ligands are involved in many developmental processes. They are hi...
AbstractNotch is a transmembrane receptor that controls cell fate decisions in Drosophila and whose ...
Notch signalling is a critical mediator of T cell development. However, while this signalling pathwa...
AbstractNotch proteins are cell surface receptors that mediate developmental cell specification even...