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Class II major histocompatibility complex mutant mice to study the germ-line bias of T-cell antigen receptors
Author(s) -
Daniel Silberman,
S. Harsha Krovi,
Kathryn D. Tuttle,
James Crooks,
Richard Reisdorph,
Janice White,
James Gross,
Jennifer L. Matsuda,
Laurent Gapin,
Philippa Marrack,
John W. Kappler
Publication year - 2016
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1609717113
Subject(s) - biology , t cell receptor , major histocompatibility complex , genetics , mutant , mhc class i , t cell , microbiology and biotechnology , antigen , immune system , gene
The interaction of αβ T-cell antigen receptors (TCRs) with peptides bound to MHC molecules lies at the center of adaptive immunity. Whether TCRs have evolved to react with MHC or, instead, processes in the thymus involving coreceptors and other molecules select MHC-specific TCRs de novo from a random repertoire is a longstanding immunological question. Here, using nuclease-targeted mutagenesis, we address this question in vivo by generating three independent lines of knockin mice with single-amino acid mutations of conserved class II MHC amino acids that often are involved in interactions with the germ-line-encoded portions of TCRs. Although the TCR repertoire generated in these mutants is similar in size and diversity to that in WT mice, the evolutionary bias of TCRs for MHC is suggested by a shift and preferential use of some TCR subfamilies over others in mice expressing the mutant class II MHCs. Furthermore, T cells educated on these mutant MHC molecules are alloreactive to each other and to WT cells, and vice versa, suggesting strong functional differences among these repertoires. Taken together, these results highlight both the flexibility of thymic selection and the evolutionary bias of TCRs for MHC.

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