DKK1 Mediated Inhibition of Wnt Signaling in Postnatal Mice Leads to Loss of TEC Progenitors and Thymic Degeneration
Open Access
- 8 February 2010
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 5 (2) , e9062
- https://doi.org/10.1371/journal.pone.0009062
Abstract
Thymic epithelial cell (TEC) microenvironments are essential for the recruitment of T cell precursors from the bone marrow, as well as the subsequent expansion and selection of thymocytes resulting in a mature self-tolerant T cell repertoire. The molecular mechanisms, which control both the initial development and subsequent maintenance of these critical microenvironments, are poorly defined. Wnt signaling has been shown to be important to the development of several epithelial tissues and organs. Regulation of Wnt signaling has also been shown to impact both early thymocyte and thymic epithelial development. However, early blocks in thymic organogenesis or death of the mice have prevented analysis of a role of canonical Wnt signaling in the maintenance of TECs in the postnatal thymus. Here we demonstrate that tetracycline-regulated expression of the canonical Wnt inhibitor DKK1 in TECs localized in both the cortex and medulla of adult mice, results in rapid thymic degeneration characterized by a loss of ΔNP63+ Foxn1+ and Aire+ TECs, loss of K5K8DP TECs thought to represent or contain an immature TEC progenitor, decreased TEC proliferation and the development of cystic structures, similar to an aged thymus. Removal of DKK1 from DKK1-involuted mice results in full recovery, suggesting that canonical Wnt signaling is required for the differentiation or proliferation of TEC populations needed for maintenance of properly organized adult thymic epithelial microenvironments. Taken together, the results of this study demonstrate that canonical Wnt signaling within TECs is required for the maintenance of epithelial microenvironments in the postnatal thymus, possibly through effects on TEC progenitor/stem cell populations. Downstream targets of Wnt signaling, which are responsible for maintenance of these TEC progenitors may provide useful targets for therapies aimed at counteracting age associated thymic involution or the premature thymic degeneration associated with cancer therapy and bone marrow transplants.Keywords
This publication has 94 references indexed in Scilit:
- Epidermal homeostasis: a balancing act of stem cells in the skinNature Reviews Molecular Cell Biology, 2009
- Differentiation of regulatory Foxp3+T cells in the thymic cortexProceedings of the National Academy of Sciences, 2008
- Wnt Signaling in the Niche Enforces Hematopoietic Stem Cell Quiescence and Is Necessary to Preserve Self-Renewal In VivoCell Stem Cell, 2008
- Proliferative arrest and rapid turnover of thymic epithelial cells expressing AireThe Journal of Experimental Medicine, 2007
- ΔNp63 regulates thymic development through enhanced expression of FgfR2 and Jag2Proceedings of the National Academy of Sciences, 2007
- RANK signals from CD4+3− inducer cells regulate development of Aire-expressing epithelial cells in the thymic medullaThe Journal of Experimental Medicine, 2007
- Sustained thymopoiesis and improvement in functional immunity induced by exogenous KGF administration in murine models of agingBlood, 2006
- p63 regulates proliferation and differentiation of developmentally mature keratinocytesGenes & Development, 2006
- Dickkopf1 Is Required for Embryonic Head Induction and Limb Morphogenesis in the MousePublished by Elsevier ,2001
- The Wnt Signaling Antagonist Kremen1 is Required for Development of Thymic ArchitectureClinical and Developmental Immunology, 2000