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Published on: September 28, 2018
Notch/Delta signaling constrains reengineering of pro-T cells by PU.1
Christopher B Franco1, Deirdre D Scripture-Adams, Irina Proekt
1Division of Biology 156-29, California Institute of Technology, Pasadena, CA 91125, USA.
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 beta-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 beta-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.
Insights
Constitutive PU.1 expression impairs T cell development by blocking key factors. However, Notch/Delta signaling can prevent this diversion, guiding T cell precursors toward their lineage.
Area of Science:
- Immunology
- Developmental Biology
- Transcriptional Regulation
Background:
- PU.1 is crucial for early T cell development but can be antagonistic when constitutively expressed.
- Dysregulated PU.1 inhibits pro-T cell survival, proliferation, and beta-selection by interfering with essential T cell transcription factors and Rag gene expression.
Purpose of the Study:
- To investigate the mechanisms by which dysregulated PU.1 expression affects T cell development.
- To explore the role of Notch/Delta signaling in modulating PU.1's effects on thymocytes.
Main Methods:
- PU.1 transduction of Bcl2 transgenic fetal thymocytes.
- Differentiation in OP9-DL1 and OP9 control cultures.
- Gene expression analysis to identify regulatory gene responses.
Main Results:
- Constitutive PU.1 inhibits T cell development, a block not rescued by T cell receptor transgene expression.
- Bcl2 transgenic cells are protected from PU.1-induced attenuation and can undergo beta-selection.
- Notch/Delta signaling vetoes PU.1-mediated diversion of thymocytes to a myeloid-like state, particularly after T lineage specification.
Conclusions:
- Notch/Delta signaling modulates PU.1 activity to channel T cell precursors during lineage specification and commitment.
- Specific gene regulatory networks, including inhibition of E proteins, Myb, and Gfi1, are implicated in PU.1-driven diversion.
- PU.1's dual role in T cell development is regulated by context-dependent interactions with signaling pathways like Notch.
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