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The Diversity of Antigen-Specific TCR Repertoires Reflects the Relative Complexity of Epitopes Recognized
Authors:Janet L Maryanski  Jean-Laurent Casanova  Kirsten Falk  Hélène Gournier  Christian Jaulin  Philippe Kourilsky  François A Lemonnier  Roland Lüthy  Hans-Georg Rammensee  Olaf Rötzschke  Catherine Servis  José Alejandro López
Institution:

A Ludwig Institute for Cancer Research, Lausanne Branch (J.L.M., J.-L.C., J.A.L.), CH-1066 Epalinges, Switzerland;

B Department of Biochemistry and Molecular Biology, Harvard University (K.F., O.R.), Cambridge, Massachusetts, U.S.A.;

C Institut Pasteur (H.G., C.J., P.K., F.A.L.), Paris, France;

D Swiss Institute for Experimental Cancer Research (R.L.), Epalinges, Switzerland;

E Interfakultäres Institut für Zellbiologie, Abteilung Immunologie, Universität Tübingen (H.-G.R.), Tübingen, Germany;

F Institut de Biochimie, Université de Lausanne (C.S., J.A.L.), Epalinges, Switzerland.

Abstract:Antigen-selected T cell receptor (TCR) repertoires vary in complexity from very limited to extremely diverse. We have previously characterized two different CD8 T cell responses, which are restricted by the same mouse major histocompatibility complex (MHC) class I molecule, H-2 Kd. The TCR repertoire in the response against a determinant from Plasmodium berghei circumsporozoite protein (PbCS; region 252–260) is very diverse, whereas TCRs expressed by clones specific for a determinant in region 170–179 of HLA-CW3 (human) MHC class I molecule show relatively limited structural diversity. We had already demonstrated that cytolytic T lymphocyte (CTL) clones specific for the PbCS peptide display diverse patterns of antigen recognition when tested with a series of single Ala-substituted PbCS peptides or mutant H-2 Kd molecules. We now show that CW3-specific CTL clones display much less diverse patterns of recognition. Our earlier functional studies with synthetic peptide variants suggested that the optimal peptides recognized were 9 (or 8) residues long for PbCS and 10 residues long for CW3. We now present more direct evidence that the natural CW3 ligand is indeed a 10-mer. Our functional data together with molecular modeling suggest that the limited TCR repertoire selected during the CW3 response is not due to a paucity of available epitopes displayed at the surface of the CW3 peptide/Kd complex. We discuss other factors, such as the expression of similar self MHC peptide sequences, that might be involved in trimming this TCR repertoire.
Keywords:antigen recognition  antigen specificity  t lymphocyte receptor  cd8 antigen  protozoal protein  major histocompatibility antigen class 1  HLA C antigen  synthetic peptide
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