Literature DB >> 9040010

Definition of an extended MHC class II-peptide binding motif for the autoimmune disease-associated Lewis rat RT1.BL molecule.

M H Wauben1, M van der Kraan, M C Grosfeld-Stulemeyer, I Joosten.   

Abstract

The Lewis rat, an inbred rat strain susceptible to several well-characterized experimental autoimmune diseases, provides a good model to study peptide-mediated immunotherapy. Peptide immunotherapy focussing on the modulation of T cell responses by interfering with TCR-peptide-MHC complex formation requires the elucidation of the molecular basis of TCR-peptide-MHC interactions for an efficient design of modulatory peptides. In the Lewis rat most autoimmune-associated CD4+ T cell responses are MHC class II RT1.BL restricted. In this study, the characteristics of RT1.BL-peptide interactions were explored. A series of substitution analogs of two Lewis rat T cell epitopes was examined in a direct peptide-MHC binding assay on isolated RT1.BL molecules. Furthermore, other autoimmune-related as well as non-disease-related T cell epitopes were tested in the binding assay. This has led to the definition of an extended RT1.BL-peptide binding motif. The RT1.BL-peptide binding motif established in this study is the first described rat MHC-peptide binding motif based on direct MHC-peptide binding experiments. To predict good or intermediate RT1.BL binding peptides, T cell epitope search profiles were deduced from this motif. The motif and search profiles will greatly facilitate the prediction of modulatory peptides based on autoimmune-associated T cell epitopes and the identification of target structures in experimental autoimmune diseases in Lewis rats.

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Year:  1997        PMID: 9040010      PMCID: PMC7109845          DOI: 10.1093/intimm/9.2.281

Source DB:  PubMed          Journal:  Int Immunol        ISSN: 0953-8178            Impact factor:   4.823


  6 in total

1.  Peptide motif for the rat MHC class II molecule RT1.Da: similarities to the multiple sclerosis-associated HLA-DRB1*1501 molecule.

Authors:  Hüseyin Duyar; Jörn Dengjel; Katrien L de Graaf; Karl-Heinz Wiesmüller; Stefan Stevanović; Robert Weissert
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2.  Pathogenic T cell responses against aquaporin 4.

Authors:  Maria Pohl; Marie-Therese Fischer; Simone Mader; Kathrin Schanda; Maja Kitic; Rakhi Sharma; Isabella Wimmer; Tatsuro Misu; Kazuo Fujihara; Markus Reindl; Hans Lassmann; Monika Bradl
Journal:  Acta Neuropathol       Date:  2011-04-06       Impact factor: 17.088

3.  Novel self-epitopes derived from aggrecan, fibrillin, and matrix metalloproteinase-3 drive distinct autoreactive T-cell responses in juvenile idiopathic arthritis and in health.

Authors:  Sylvia Kamphuis; Kolbrún Hrafnkelsdóttir; Mark R Klein; Wilco de Jager; Margje H Haverkamp; Jolanda H M van Bilsen; Salvatore Albani; Wietse Kuis; Marca H M Wauben; Berent J Prakken
Journal:  Arthritis Res Ther       Date:  2006       Impact factor: 5.156

4.  Predicting Class II MHC-Peptide binding: a kernel based approach using similarity scores.

Authors:  Jesper Salomon; Darren R Flower
Journal:  BMC Bioinformatics       Date:  2006-11-14       Impact factor: 3.169

Review 5.  Experimental models of neuromyelitis optica.

Authors:  Monika Bradl; Hans Lassmann
Journal:  Brain Pathol       Date:  2014-01       Impact factor: 6.508

6.  Highly encephalitogenic aquaporin 4-specific T cells and NMO-IgG jointly orchestrate lesion location and tissue damage in the CNS.

Authors:  Bleranda Zeka; Maria Hastermann; Sonja Hochmeister; Nikolaus Kögl; Nathalie Kaufmann; Kathrin Schanda; Simone Mader; Tatsuro Misu; Paulus Rommer; Kazuo Fujihara; Zsolt Illes; Fritz Leutmezer; Douglas Kazutoshi Sato; Ichiro Nakashima; Markus Reindl; Hans Lassmann; Monika Bradl
Journal:  Acta Neuropathol       Date:  2015-11-03       Impact factor: 17.088

  6 in total

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