One naive T cell, multiple fates in CD8+ T cell differentiation

Carmen Gerlach(The Netherlands Cancer Institute), Jeroen W. J. van Heijst(The Netherlands Cancer Institute), Erwin Swart(The Netherlands Cancer Institute), Daoud Sie(The Netherlands Cancer Institute), Nicola J. Armstrong(The Netherlands Cancer Institute), Ron Kerkhoven(The Netherlands Cancer Institute), Dietmar Zehn(Swiss Vaccine Research Institute), Michael J. Bevan(Howard Hughes Medical Institute), Koen Schepers(The Netherlands Cancer Institute), Ton N. Schumacher(The Netherlands Cancer Institute)
The Journal of Experimental Medicine
May 17, 2010
Cited by 216Open Access
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Abstract

The mechanism by which the immune system produces effector and memory T cells is largely unclear. To allow a large-scale assessment of the development of single naive T cells into different subsets, we have developed a technology that introduces unique genetic tags (barcodes) into naive T cells. By comparing the barcodes present in antigen-specific effector and memory T cell populations in systemic and local infection models, at different anatomical sites, and for TCR-pMHC interactions of different avidities, we demonstrate that under all conditions tested, individual naive T cells yield both effector and memory CD8+ T cell progeny. This indicates that effector and memory fate decisions are not determined by the nature of the priming antigen-presenting cell or the time of T cell priming. Instead, for both low and high avidity T cells, individual naive T cells have multiple fates and can differentiate into effector and memory T cell subsets.


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