Notch/Delta signaling constrains reengineering of pro-T cells by PU.1
Open Access
- 8 August 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (32) , 11993-11998
- https://doi.org/10.1073/pnas.0601188103
Abstract
PU.1 is essential for early stages of mouse T cell development but antagonizes it if expressed constitutively. Two separable mechanisms are involved: attenuation and diversion. Dysregulated PU.1 expression inhibits pro-T cell survival, proliferation, and passage through β-selection by blocking essential T cell transcription factors, signaling molecules, and Rag gene expression, which expression of a rearranged T cell antigen receptor transgene cannot rescue. However, Bcl2 transgenic cells are protected from this attenuation and may even undergo β-selection, as shown by PU.1 transduction of defined subsets of Bcl2 transgenic fetal thymocytes with differentiation in OP9-DL1 and OP9 control cultures. The outcome of PU.1 expression in these cells depends on Notch/Delta signaling. PU.1 can efficiently divert thymocytes toward a myeloid-like state with multigene regulatory changes, but Notch/Delta signaling vetoes diversion. Gene expression analysis distinguishes sets of critical T lineage regulatory genes with different combinatorial responses to PU.1 and Notch/Delta signals, suggesting particular importance for inhibition of E proteins, Myb, and/or Gfi1 (growth factor independence 1) in diversion. However, Notch signaling only protects against diversion of cells that have undergone T lineage specification after Thy-1 and CD25 up-regulation. The results imply that in T cell precursors, Notch/Delta signaling normally acts to modulate and channel PU.1 transcriptional activities during the stages from T lineage specification until commitment.Keywords
This publication has 34 references indexed in Scilit:
- DETERMINANTS OF LYMPHOID-MYELOID LINEAGE DIVERSIFICATIONAnnual Review of Immunology, 2006
- Progression of regulatory gene expression states in fetal and adult pro‐T‐cell developmentImmunological Reviews, 2006
- Delayed, asynchronous, and reversible T-lineage specification induced by Notch/Delta signalingGenes & Development, 2005
- Subversion of T lineage commitment by PU.1 in a clonal cell line systemDevelopmental Biology, 2005
- Transcriptional regulation in myelopoiesis: Hematopoietic fate choice, myeloid differentiation, and leukemogenesisExperimental Hematology, 2005
- Maintenance of T Cell Specification and Differentiation Requires Recurrent Notch Receptor–Ligand InteractionsThe Journal of Experimental Medicine, 2004
- GATA-1 Converts Lymphoid and Myelomonocytic Progenitors into the Megakaryocyte/Erythrocyte LineagesImmunity, 2003
- Transcriptional profiling identifies Id2 function in dendritic cell developmentNature Immunology, 2003
- Lineage plasticity and commitment in T‐cell developmentImmunological Reviews, 2002
- The role of Ets family transcription factor PU.1 in hematopoietic cell differentiation, proliferation and apoptosisCell Death & Differentiation, 1999