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Self-renewal of double-negative 3 early thymocytes enables thymus autonomy but compromises the β-selection checkpoint. | LitMetric

Self-renewal of double-negative 3 early thymocytes enables thymus autonomy but compromises the β-selection checkpoint.

Cell Rep

Lymphocyte Development and Leukemogenesis Laboratory, Instituto Gulbenkian de Ciência, Calouste Gulbenkian Foundation, Oeiras 2780-156, Portugal. Electronic address:

Published: April 2021

AI Article Synopsis

  • Thymocyte differentiation normally involves high turnover without self-renewal, but the thymus can temporarily sustain itself when progenitors are low, risking leukemia if this persists.
  • DN3e thymocytes, which resemble stem cells, are key to this autonomous thymus function, becoming long-lived and necessary for continued thymopoiesis in the absence of regular progenitors.
  • Although DN3e thymocytes maintain similar transcriptional programs to normal thymopoiesis, they exhibit abnormal gene expression patterns, leading to a bypass of critical development checkpoints and potentially resulting in leukemia.

Article Abstract

T lymphocyte differentiation in the steady state is characterized by high cellular turnover whereby thymocytes do not self-renew. However, if deprived of competent progenitors, the thymus can temporarily maintain thymopoiesis autonomously. This bears a heavy cost, because prolongation of thymus autonomy causes leukemia. Here, we show that, at an early stage, thymus autonomy relies on double-negative 3 early (DN3e) thymocytes that acquire stem-cell-like properties. Following competent progenitor deprivation, DN3e thymocytes become long lived, are required for thymus autonomy, differentiate in vivo, and include DNA-label-retaining cells. At the single-cell level, the transcriptional programs of thymopoiesis in autonomy and the steady state are similar. However, a new cell population emerges in autonomy that expresses an aberrant Notch target gene signature and bypasses the β-selection checkpoint. In summary, DN3e thymocytes have the potential to self-renew and differentiate in vivo if cell competition is impaired, but this generates atypical cells, probably the precursors of leukemia.

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Source
http://dx.doi.org/10.1016/j.celrep.2021.108967DOI Listing

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