Literature DB >> 12697765

The CD8 T cell coreceptor exhibits disproportionate biological activity at extremely low binding affinities.

Sarah L Hutchinson1, Linda Wooldridge, Sabrina Tafuro, Bruno Laugel, Meir Glick, Jonathan M Boulter, Bent K Jakobsen, David A Price, Andrew K Sewell.   

Abstract

T lymphocytes recognize peptides presented in the context of major histocompatibility complex (MHC) molecules on the surface of antigen presenting cells. Recognition specificity is determined by the alphabeta T cell receptor (TCR). The T lymphocyte surface glycoproteins CD8 and CD4 enhance T cell antigen recognition by binding to MHC class I and class II molecules, respectively. Biophysical measurements have determined that equilibrium binding of the TCR with natural agonist peptide-MHC (pMHC) complexes occurs with KD values of 1-50 microm. The pMHCI/CD8 and pMHCII/CD4 interactions are significantly weaker than this (KD >100 microm), and the relative roles of TCR/pMHC and pMHC/coreceptor affinity in T cell activation remain controversial. Here, we engineer mutations in the MHCI heavy chain and beta2-microglobulin that further reduce or abolish the pMHCI/CD8 interaction to probe the significance of pMHC/coreceptor affinity in T cell activation. We demonstrate that the pMHCI/CD8 coreceptor interaction retains the vast majority of its biological activity at affinities that are reduced by over 15-fold (KD > 2 mm). In contrast to previous reports, we observe that the weak interaction between HLA A68 and CD8, which falls within this spectrum of reduced affinities, retains substantial functional activity. These findings are discussed in the context of current concepts of coreceptor dependence and the mechanism by which TCR coreceptors facilitate T cell activation.

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Year:  2003        PMID: 12697765     DOI: 10.1074/jbc.M300633200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  50 in total

1.  Transcriptionally abundant major histocompatibility complex class I alleles are fundamental to nonhuman primate simian immunodeficiency virus-specific CD8+ T cell responses.

Authors:  Melisa L Budde; Jennifer J Lhost; Benjamin J Burwitz; Ericka A Becker; Charles M Burns; Shelby L O'Connor; Julie A Karl; Roger W Wiseman; Benjamin N Bimber; Guang Lan Zhang; William Hildebrand; Vladimir Brusic; David H O'Connor
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2.  Specific recognition of macroscopic objects by the cell surface: evidence for a receptor density threshold revealed by micrometric particle binding characteristics.

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3.  Erythropoietin Stimulates Tumor Growth via EphB4.

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Review 4.  The molecular determinants of CD8 co-receptor function.

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7.  High-Throughput Identification of MHC Class I Binding Peptides Using an Ultradense Peptide Array.

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8.  T cells target APOBEC3 proteins in human immunodeficiency virus type 1-infected humans and simian immunodeficiency virus-infected Indian rhesus macaques.

Authors:  Stéphane Champiat; Keith E Garrison; Rui André Saraiva Raposo; Benjamin J Burwitz; Jason Reed; Ravi Tandon; Vanessa A York; Laura P Newman; Francesca A Nimityongskul; Nancy A Wilson; Rafael R Almeida; Jeffrey N Martin; Steven G Deeks; Michael G Rosenberg; Andrew A Wiznia; Gerald E Spotts; Christopher D Pilcher; Fredrick M Hecht; Mario A Ostrowski; Jonah B Sacha; Douglas F Nixon
Journal:  J Virol       Date:  2013-03-27       Impact factor: 5.103

9.  Two MHC class I molecules associated with elite control of immunodeficiency virus replication, Mamu-B*08 and HLA-B*2705, bind peptides with sequence similarity.

Authors:  John T Loffredo; John Sidney; Alex T Bean; Dominic R Beal; Wilfried Bardet; Angela Wahl; Oriana E Hawkins; Shari Piaskowski; Nancy A Wilson; William H Hildebrand; David I Watkins; Alessandro Sette
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10.  Enhanced immunogenicity of CTL antigens through mutation of the CD8 binding MHC class I invariant region.

Authors:  Linda Wooldridge; Anna Lissina; Jonathan Vernazza; Emma Gostick; Bruno Laugel; Sarah L Hutchinson; Fareed Mirza; P Rod Dunbar; Jonathan M Boulter; Meir Glick; Vincenzo Cerundolo; Hugo A van den Berg; David A Price; Andrew K Sewell
Journal:  Eur J Immunol       Date:  2007-05       Impact factor: 5.532

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