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Updated: Jul 14, 2025

Examination of Thymic Positive and Negative Selection by Flow Cytometry
Published on: October 8, 2012
Nuclear corepressors NCOR1 and NCOR2 entrain thymocyte signaling, selection, and emigration
Natalie A David1, Robin D Lee1, Rebecca S LaRue2
1Center for Immunology, Masonic Cancer Center, Department of Laboratory Medicine and Pathology, Medical School, University of Minnesota, Minneapolis, MN 55455.
Abstract:
T cell development proceeds via discrete stages that require both gene induction and gene repression. Transcription factors direct gene repression by associating with corepressor complexes containing chromatin-remodeling enzymes; the corepressors NCOR1 and NCOR2 recruit histone deacetylases to these complexes to silence transcription of target genes. Earlier work identified the importance of NCOR1 in promoting the survival of positively-selected thymocytes. Here, we used flow cytometry and single-cell RNA sequencing to identify a broader role for NCOR1 and NCOR2 in regulating thymocyte development. Using Cd4-cre mice, we found that conditional deletion of NCOR2 had no effect on thymocyte development, whereas conditional deletion of NCOR1 had a modest effect. In contrast, Cd4-cre x Ncor1 x Ncor2 mice exhibited a significant block in thymocyte development at the DP to SP transition. Combined NCOR1/2 deletion resulted in increased signaling through the T cell receptor, ultimately resulting in elevated BIM expression and increased negative selection. The NF-κB, NUR77, and MAPK signaling pathways were also upregulated in the absence of NCOR1/2, contributing to altered CD4/CD8 lineage commitment, TCR rearrangement, and thymocyte emigration. Taken together, our data identify multiple critical roles for the combined action of NCOR1 and NCOR2 over the course of thymocyte development.
Insights
Nuclear receptor corepressor 1 (NCOR1) and NCOR2 are crucial for T cell development. Combined deletion of NCOR1 and NCOR2 blocks thymocyte development, altering T cell receptor signaling and selection.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- T cell development involves precise gene regulation, including induction and repression.
- Transcription factors utilize corepressor complexes with chromatin-remodeling enzymes for gene silencing.
- Nuclear receptor corepressor 1 (NCOR1) and NCOR2 recruit histone deacetylases to silence target genes.
Conclusions:
- NCOR1 and NCOR2 act combinatorially to regulate multiple stages of thymocyte development.
- The combined action of NCOR1/2 is critical for proper T cell maturation.
- Dysregulation of NCOR1/2 impacts T cell receptor signaling, selection, and lineage commitment.
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