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Publication : Foxp3 transcription factor is proapoptotic and lethal to developing regulatory T cells unless counterbalanced by cytokine survival signals.

First Author  Tai X Year  2013
Journal  Immunity Volume  38
Issue  6 Pages  1116-28
PubMed ID  23746651 Mgi Jnum  J:207587
Mgi Id  MGI:5559144 Doi  10.1016/j.immuni.2013.02.022
Citation  Tai X, et al. (2013) Foxp3 transcription factor is proapoptotic and lethal to developing regulatory T cells unless counterbalanced by cytokine survival signals. Immunity 38(6):1116-28
abstractText  Immune tolerance requires regulatory T (Treg) cells to prevent autoimmune disease, with the transcription factor Foxp3 functioning as the critical regulator of Treg cell development and function. We report here that Foxp3 was lethal to developing Treg cells in the thymus because it induced a unique proapoptotic protein signature (Puma(+)(+)(+)p-Bim(+)(+)p-JNK(+)(+)DUSP6(-)) and repressed expression of prosurvival Bcl-2 molecules. However, Foxp3 lethality was prevented by common gamma chain (gammac)-dependent cytokine signals that were present in the thymus in limiting amounts sufficient to support only approximately 1 million Treg cells. Consequently, most newly arising Treg cells in the thymus were deprived of this signal and underwent Foxp3-induced death, with Foxp3(+)CD25(-) Treg precursor cells being the most susceptible. Thus, we identify Foxp3 as a proapoptotic protein that requires developing Treg cells to compete with one another for limiting amounts of gammac-dependent survival signals in the thymus.
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