AbstractThe role of the pre–T cell receptor (TCR) in lineage commitment to the γδ versus αβ lineage of T cells was addressed by analyzing TCRβ chain rearrangements in γδ T cells from wild-type and pre-TCR-deficient mice by single cell polymerase chain reaction. Results show that the pre-TCR selects against γδ T cells containing rearranged Vβ genes and that γδ T cell precursors but not γδ T cells express the pre-TCRα protein. Furthermore, pre-TCR-induced proliferation could not be detected in γδ T cells. We propose that the pre-TCR commits developing T cells to the αβ lineage by an instructive mechanism that has largely replaced an evolutionary more ancient stochastic mechanism of lineage commitment
The pre-T cell receptor (preTCR) is required for αβ T cell development and hence efficient adaptive ...
AbstractMature T cells comprise two mutually exclusive lineages expressing heterodimeric αβ or γδ an...
T-cell development is a complex multi-step process, driving the maturation of hematopoietic stem cel...
AbstractThe role of the pre–T cell receptor (TCR) in lineage commitment to the γδ versus αβ lineage ...
AbstractDifferentiation of γδ and αβ T cells from a common precursor cell depends on productive rear...
AbstractBackground: The subdivision of T cells into αβ and γδ subtypes is conserved throughout verte...
AbstractFollowing the recent realization that TCRβ transgenes can severely inhibit the rearrangement...
International audienceLineage choice is of great interest in developmental biology. In the immune sy...
SummarySignals transduced by T cell antigen receptors (TCRs) have been shown to be critical for αβ a...
AbstractBackground: The development of immature thymocytes is regulated by the pre-T-cell receptor (...
Two types of T cells, alphabeta and gammadelta, develop in vertebrates. How these two T cell lineage...
Expression and signalling through the pre-TCR and the TCRαβ resemble two critical checkpoints during...
AbstractUsing a quantitative multiprobe Southern blot analysis, we demonstrate the surprising result...
Signaling via the T cell receptor (TCR) is critical during the development, maintenance, and activat...
AbstractExpression of a TCRγ transgene in RAG-1−/− mice resulted in the development of a limited num...
The pre-T cell receptor (preTCR) is required for αβ T cell development and hence efficient adaptive ...
AbstractMature T cells comprise two mutually exclusive lineages expressing heterodimeric αβ or γδ an...
T-cell development is a complex multi-step process, driving the maturation of hematopoietic stem cel...
AbstractThe role of the pre–T cell receptor (TCR) in lineage commitment to the γδ versus αβ lineage ...
AbstractDifferentiation of γδ and αβ T cells from a common precursor cell depends on productive rear...
AbstractBackground: The subdivision of T cells into αβ and γδ subtypes is conserved throughout verte...
AbstractFollowing the recent realization that TCRβ transgenes can severely inhibit the rearrangement...
International audienceLineage choice is of great interest in developmental biology. In the immune sy...
SummarySignals transduced by T cell antigen receptors (TCRs) have been shown to be critical for αβ a...
AbstractBackground: The development of immature thymocytes is regulated by the pre-T-cell receptor (...
Two types of T cells, alphabeta and gammadelta, develop in vertebrates. How these two T cell lineage...
Expression and signalling through the pre-TCR and the TCRαβ resemble two critical checkpoints during...
AbstractUsing a quantitative multiprobe Southern blot analysis, we demonstrate the surprising result...
Signaling via the T cell receptor (TCR) is critical during the development, maintenance, and activat...
AbstractExpression of a TCRγ transgene in RAG-1−/− mice resulted in the development of a limited num...
The pre-T cell receptor (preTCR) is required for αβ T cell development and hence efficient adaptive ...
AbstractMature T cells comprise two mutually exclusive lineages expressing heterodimeric αβ or γδ an...
T-cell development is a complex multi-step process, driving the maturation of hematopoietic stem cel...