Thymopoiesis strictly depends on the function of the Foxn1 transcription factor that is expressed in the thymic epithelium. During embryonic development, initial expression of the Foxn1 gene is induced in the pharyngeal endoderm by mesenchyme-derived BMP4 signals. Here, by engineering a time-delayed feedback system of BMP inhibition in mouse embryos, we demonstrate that thymopoiesis irreversibly fails if Foxn1 gene expression does not occur during a defining time span in mid-gestation. We also reveal an epistatic interaction between the extent of BMP signalling and the gene dosage of Foxn1. Our findings illustrate the complexities of the early steps of thymopoiesis and indicate that sporadic forms of thymic hypoplasia in humans may result f...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
T cell ontogeny is a sophisticated process, which takes place within the thymus through a series of ...
The transcription factor FOXN1 is a master regulator of thymic epithelial cell (TEC) development and...
Thymopoiesis strictly depends on the function of the Foxn1 transcription factor that is expressed in...
Thymopoiesis strictly depends on the function of the Foxn1 transcription factor that is expressed in...
Thymopoiesis strictly depends on proper differentiation of the thymic epithelial anlage. Differentia...
The thymus is essential for T-cell development. Here, we focus on the role of the transcription fact...
The forkhead transcription factor Foxn1 is indispensable for thymus development, but the mechanisms ...
The microenvironment of the thymus fosters the generation of a diverse and self-tolerant T cell repe...
The development of the parathyroid and the thymus from the third pharyngeal pouch depends on the act...
Thymus function requires extensive cross-talk between developing T-cells and the thymic epithelium, ...
AbstractThe thymus and parathyroids are pharyngeal endoderm-derived organs that develop from common ...
FOXN1 is the master regulatory gene of thymic epithelium development. FOXN1 deficiency leads to thym...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
T cell ontogeny is a sophisticated process, which takes place within the thymus through a series of ...
The transcription factor FOXN1 is a master regulator of thymic epithelial cell (TEC) development and...
Thymopoiesis strictly depends on the function of the Foxn1 transcription factor that is expressed in...
Thymopoiesis strictly depends on the function of the Foxn1 transcription factor that is expressed in...
Thymopoiesis strictly depends on proper differentiation of the thymic epithelial anlage. Differentia...
The thymus is essential for T-cell development. Here, we focus on the role of the transcription fact...
The forkhead transcription factor Foxn1 is indispensable for thymus development, but the mechanisms ...
The microenvironment of the thymus fosters the generation of a diverse and self-tolerant T cell repe...
The development of the parathyroid and the thymus from the third pharyngeal pouch depends on the act...
Thymus function requires extensive cross-talk between developing T-cells and the thymic epithelium, ...
AbstractThe thymus and parathyroids are pharyngeal endoderm-derived organs that develop from common ...
FOXN1 is the master regulatory gene of thymic epithelium development. FOXN1 deficiency leads to thym...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
Thymic epithelial cell differentiation, growth and function depend on the expression of the transcri...
T cell ontogeny is a sophisticated process, which takes place within the thymus through a series of ...
The transcription factor FOXN1 is a master regulator of thymic epithelial cell (TEC) development and...