c-Myb promotes the survival of CD4+CD8+ double positive thymocytes through up-regulation of Bcl-xL
Mechanisms that regulate the lifespan of CD4 + CD8 + double positive (DP) thymocytes help shape the peripheral T cell repertoire. However, the molecular mechanisms that control DP thymocyte survival remain poorly understood. The Myb proto-oncogene encodes a transcription factor required during multi...
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Veröffentlicht in: | The Journal of immunology (1950) 2010-02, Vol.184 (6), p.2793-2804 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Mechanisms that regulate the lifespan of CD4
+
CD8
+
double positive (DP) thymocytes help shape the peripheral T cell repertoire. However, the molecular mechanisms that control DP thymocyte survival remain poorly understood. The
Myb
proto-oncogene encodes a transcription factor required during multiple stages of T cell development. We demonstrate that
Myb
mRNA expression is up-regulated in the small, pre-selection DP stage during T cell development. Using a conditional deletion mouse model, we demonstrate that
Myb
deficient DP thymocytes undergo premature apoptosis, resulting in a limited
Tcr
α repertoire biased towards 5’
J
α segment usage. Premature apoptosis occurs in the small pre-selection DP compartment in an αβTCR independent manner and is a consequence of decreased Bcl-xL expression. Forced Bcl-xL expression is able to rescue survival and re-introduction of c-Myb restores both Bcl-xL expression and the small pre-selection DP compartment. We further demonstrate that thymocytes become dependent on Bcl-xL for survival upon entering the quiescent, small pre-selection DP stage and c-Myb promotes transcription at the
Bclx
locus via a genetic pathway that is independent of the expression of TCF-1 or RORγt, two transcription factors that induce Bcl-xL expression in T cell development. Thus, Bcl-xL is a novel mediator of c-Myb activity during normal T cell development. |
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ISSN: | 0022-1767 1550-6606 |
DOI: | 10.4049/jimmunol.0902846 |