Retinoic Acid Receptor γ Regulates B and T Lymphopoiesis via Nestin-Expressing Cells in the Bone Marrow and Thymic Microenvironments.

J Immunol

Stem Cell Regulation Unit, St. Vincent's Institute of Medical Research, Fitzroy, Victoria 3065, Australia; and Department of Medicine, St. Vincent's Hospital, Fitzroy, Victoria 3065, Australia

Published: March 2016

AI Article Synopsis

  • Vitamin A plays a crucial but not fully understood role in the development of lymphocytes, with its receptor RARγ being significant in this process.
  • Conditional deletion of RARγ in specific bone marrow microenvironment cells (Nes-expressing) led to a decrease in B and T cell populations, highlighting its regulatory function.
  • Short-term retinoic acid treatment enhanced early B cell development and increased T cell precursors, further demonstrating the importance of RARγ in lymphocyte production in the bone marrow and thymus.

Article Abstract

Vitamin A has essential but largely unexplained roles in regulating lymphopoiesis. We have previously shown that retinoic acid receptor (RAR) γ-deficient mice have hematopoietic defects, some phenotypes of which were microenvironment induced. Bone marrow (BM) microenvironment cells identified by either their expression of nestin (Nes) or osterix (Osx) have previously been shown to have roles in regulating lymphopoiesis. We therefore conditionally deleted Rarγ in Nes- or Osx-expressing microenvironment cells. Osx cell-specific deletion of Rarγ had no impact on hematopoiesis. In contrast, deletion of Rarγ in Nes-expressing cells resulted in reductions in peripheral blood B cells and CD4(+) T cells, accompanied by reductions of immature PreB cells in BM. The mice lacking Rarγ in Nes-expressing cells also had smaller thymi, with reductions in double-negative 4 T cell precursors, accompanied by reduced numbers of both TCRβ(low) immature single-positive CD8(+) cells and double-positive T cells. In the thymus, Nes expression was restricted to thymic stromal cells that expressed cerebellar degeneration-related Ag 1 and lacked expression of epithelial cell adhesion molecule. These cells expressed platelet-derived growth factor α and high transcript levels of Rars, Cxcl12, and stem cell factor (Scf). Short-term treatment of mice with all-trans retinoic acid resulted in increased PreB lymphopoiesis in BM and an increase in thymic double-negative 4 T cells, inverse to that observed upon Nes cell-specific deletion of Rarγ. Collectively, these studies show that RARγ is a regulator of B and T lymphopoiesis via Nes-expressing cells in the BM and thymic microenvironments, respectively.

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Source
http://dx.doi.org/10.4049/jimmunol.1501246DOI Listing

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