The Scurfy mutation of FoxP3 in the thymus stroma leads to defective thymopoiesis

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Abstract

The Scurfy mutation of the FoxP3 gene (FoxP3sf) in the mouse and analogous mutations in human result in lethal autoimmunity. The mutation of FoxP3 in the hematopoietic cells impairs the development of regulatory T cells. In addition, development of the Scurfy disease also may require mutation of the gene in nonhematopoietic cells. The T cell-extrinsic function of FoxP3 has not been characterized. Here we show that the FoxP3sf mutation leads to defective thymopoiesis, which is caused by inactivation of FoxP3 in the thymic stromal cells. FoxP3 mutation also results in overexpression of ErbB2 in the thymic stroma, which may be involved in defective thymopoiesis. Our data reveal a novel T cell-extrinsic function of FoxP3. In combination, the T cell-intrinsic and -extrinsic defects provide plausible explanation for the severity of the autoimmune diseases in the scurfy mice and in patients who have immunodysregulation, polyendocrinopathy, enteropathy, and X-linked syndrome. JEM © The Rockefeller University Press.

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Chang, X., Gao, J. X., Jiang, Q., Wen, J., Seifers, N., Su, L., … Liu, Y. (2005). The Scurfy mutation of FoxP3 in the thymus stroma leads to defective thymopoiesis. Journal of Experimental Medicine, 202(8), 1141–1151. https://doi.org/10.1084/jem.20050157

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