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Norway

PMID:22945921  

Reduced TCR signaling potential impairs negative selection but does not result in autoimmune disease.

Sujin Hwang | Ki-Duk Song | Renaud Lesourne | Jan Lee | Julia Pinkhasov | Liqi Li | Dalal El-Khoury | Paul E Love
The Journal of experimental medicine | 2012

Negative selection and regulatory T (T reg) cell development are two thymus-dependent processes necessary for the enforcement of self-tolerance, and both require high-affinity interactions between the T cell receptor (TCR) and self-ligands. However, it remains unclear if they are similarly impacted by alterations in TCR signaling potential. We generated a knock-in allele (6F) of the TCR ζ chain gene encoding a mutant protein lacking signaling capability whose expression is controlled by endogenous ζ regulatory sequences. Although negative selection was defective in 6F/6F mice, leading to the survival of autoreactive T cells, 6F/6F mice did not develop autoimmune disease. We found that 6F/6F mice generated increased numbers of thymus-derived T reg cells. We show that attenuation of TCR signaling potential selectively impacts downstream signaling responses and that this differential effect favors Foxp3 expression and T reg cell lineage commitment. These results identify a potential compensatory pathway for the enforcement of immune tolerance in response to defective negative selection caused by reduced TCR signaling capability.

Pubmed ID: 22945921

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Associated grants

  • Agency: Intramural NIH HHS, United States

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