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TCR-dependent transformation of mature memory phenotype T cells in mice
Xi Wang, … , Harvey Cantor, Charles W.M. Roberts
Xi Wang, … , Harvey Cantor, Charles W.M. Roberts
Published September 19, 2011
Citation Information: J Clin Invest. 2011;121(10):3834-3845. https://doi.org/10.1172/JCI37210.
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Research Article Hematology

TCR-dependent transformation of mature memory phenotype T cells in mice

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Abstract

A fundamental goal in cancer research is the identification of the cell types and signaling pathways capable of initiating and sustaining tumor growth, as this has the potential to reveal therapeutic targets. Stem and progenitor cells have been implicated in the genesis of select lymphoid malignancies. However, the identity of the cells in which mature lymphoid neoplasms are initiated remains unclear. Here, we investigate the origin of peripheral T cell lymphomas using mice in which Snf5, a chromatin remodelling–complex subunit with tumor suppressor activity, could be conditionally inactivated in developing T cells. In this model of mature peripheral T cell lymphomas, the cell of origin was a mature CD44hiCD122loCD8+ T cell that resembled a subset of memory cells that has capacity for self-renewal and robust expansion, features shared with stem cells. Further analysis showed that Snf5 loss led to activation of a Myc-driven signaling network and stem cell transcriptional program. Finally, lymphomagenesis and lymphoma proliferation depended upon TCR signaling, establishing what we believe to be a new paradigm for lymphoid malignancy growth. These findings suggest that the self-renewal and robust proliferative capacities of memory T cells are associated with vulnerability to oncogenic transformation. Our findings further suggest that agents that impinge upon TCR signaling may represent an effective therapeutic modality for this class of lethal human cancers.

Authors

Xi Wang, Miriam B.F. Werneck, Boris G. Wilson, Hye-Jung Kim, Michael J. Kluk, Christopher S. Thom, Jonathan W. Wischhusen, Julia A. Evans, Jonathan L. Jesneck, Phuong Nguyen, Courtney G. Sansam, Harvey Cantor, Charles W.M. Roberts

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Figure 4

The CD44hi subset of Snf5-deficient lymphoma cells has memory-like features.

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The CD44hi subset of Snf5-deficient lymphoma cells has memory-like featu...
(A) Evaluation of global gene expression using KNN analysis. The signatures of CD44hi and CD44lo subsets from 4 independent Snf5-deficient lymphomas were compared with previously published gene signatures for naive and memory cell populations. Enrichment for the memory signature is indicated by an upward positive deflection of the bars, while enrichment for the naive signature is indicated by a downward negative deflection. (B) GSEA of a set of genes highly expressed in memory cells. Upward deflection of the green line indicates enrichment of the memory signature within the CD44hi population (P < 0.0001). FDR, false discovery rate; NES, normalized enrichment score. (C) Relative expression of RANTES (top) and Actb (bottom) by sorted CD44hi and CD44loSnf5–/– lymphoma subpopulations determined by array-based gene expression analysis. Horizontal bars indicate the mean.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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