Cargando…

Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice

There is accumulating evidence that autoimmunity to insulin B chain peptide, amino acids 9–23 (insulin B:9–23), is central to development of autoimmune diabetes of the NOD mouse model. We hypothesized that enhanced susceptibility to autoimmune diabetes is the result of targeting of insulin by a T-ce...

Descripción completa

Detalles Bibliográficos
Autores principales: Nakayama, Maki, Castoe, Todd, Sosinowski, Tomasz, He, XiangLing, Johnson, Kelly, Haskins, Kathryn, Vignali, Dario A.A., Gapin, Laurent, Pollock, David, Eisenbarth, George S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3314349/
https://www.ncbi.nlm.nih.gov/pubmed/22315318
http://dx.doi.org/10.2337/db11-1113
_version_ 1782228087302258688
author Nakayama, Maki
Castoe, Todd
Sosinowski, Tomasz
He, XiangLing
Johnson, Kelly
Haskins, Kathryn
Vignali, Dario A.A.
Gapin, Laurent
Pollock, David
Eisenbarth, George S.
author_facet Nakayama, Maki
Castoe, Todd
Sosinowski, Tomasz
He, XiangLing
Johnson, Kelly
Haskins, Kathryn
Vignali, Dario A.A.
Gapin, Laurent
Pollock, David
Eisenbarth, George S.
author_sort Nakayama, Maki
collection PubMed
description There is accumulating evidence that autoimmunity to insulin B chain peptide, amino acids 9–23 (insulin B:9–23), is central to development of autoimmune diabetes of the NOD mouse model. We hypothesized that enhanced susceptibility to autoimmune diabetes is the result of targeting of insulin by a T-cell receptor (TCR) sequence commonly encoded in the germline. In this study, we aimed to demonstrate that a particular Vα gene TRAV5D-4 with multiple junction sequences is sufficient to induce anti-islet autoimmunity by studying retrogenic mouse lines expressing α-chains with different Vα TRAV genes. Retrogenic NOD strains expressing Vα TRAV5D-4 α-chains with many different complementarity determining region (CDR) 3 sequences, even those derived from TCRs recognizing islet-irrelevant molecules, developed anti-insulin autoimmunity. Induction of insulin autoantibodies by TRAV5D-4 α-chains was abrogated by the mutation of insulin peptide B:9–23 or that of two amino acid residues in CDR1 and 2 of the TRAV5D-4. TRAV13–1, the human ortholog of murine TRAV5D-4, was also capable of inducing in vivo anti-insulin autoimmunity when combined with different murine CDR3 sequences. Targeting primary autoantigenic peptides by simple germline-encoded TCR motifs may underlie enhanced susceptibility to the development of autoimmune diabetes.
format Online
Article
Text
id pubmed-3314349
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-33143492013-04-01 Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice Nakayama, Maki Castoe, Todd Sosinowski, Tomasz He, XiangLing Johnson, Kelly Haskins, Kathryn Vignali, Dario A.A. Gapin, Laurent Pollock, David Eisenbarth, George S. Diabetes Immunology and Transplantation There is accumulating evidence that autoimmunity to insulin B chain peptide, amino acids 9–23 (insulin B:9–23), is central to development of autoimmune diabetes of the NOD mouse model. We hypothesized that enhanced susceptibility to autoimmune diabetes is the result of targeting of insulin by a T-cell receptor (TCR) sequence commonly encoded in the germline. In this study, we aimed to demonstrate that a particular Vα gene TRAV5D-4 with multiple junction sequences is sufficient to induce anti-islet autoimmunity by studying retrogenic mouse lines expressing α-chains with different Vα TRAV genes. Retrogenic NOD strains expressing Vα TRAV5D-4 α-chains with many different complementarity determining region (CDR) 3 sequences, even those derived from TCRs recognizing islet-irrelevant molecules, developed anti-insulin autoimmunity. Induction of insulin autoantibodies by TRAV5D-4 α-chains was abrogated by the mutation of insulin peptide B:9–23 or that of two amino acid residues in CDR1 and 2 of the TRAV5D-4. TRAV13–1, the human ortholog of murine TRAV5D-4, was also capable of inducing in vivo anti-insulin autoimmunity when combined with different murine CDR3 sequences. Targeting primary autoantigenic peptides by simple germline-encoded TCR motifs may underlie enhanced susceptibility to the development of autoimmune diabetes. American Diabetes Association 2012-04 2012-03-14 /pmc/articles/PMC3314349/ /pubmed/22315318 http://dx.doi.org/10.2337/db11-1113 Text en © 2012 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Immunology and Transplantation
Nakayama, Maki
Castoe, Todd
Sosinowski, Tomasz
He, XiangLing
Johnson, Kelly
Haskins, Kathryn
Vignali, Dario A.A.
Gapin, Laurent
Pollock, David
Eisenbarth, George S.
Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title_full Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title_fullStr Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title_full_unstemmed Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title_short Germline TRAV5D-4 T-Cell Receptor Sequence Targets a Primary Insulin Peptide of NOD Mice
title_sort germline trav5d-4 t-cell receptor sequence targets a primary insulin peptide of nod mice
topic Immunology and Transplantation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3314349/
https://www.ncbi.nlm.nih.gov/pubmed/22315318
http://dx.doi.org/10.2337/db11-1113
work_keys_str_mv AT nakayamamaki germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT castoetodd germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT sosinowskitomasz germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT hexiangling germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT johnsonkelly germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT haskinskathryn germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT vignalidarioaa germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT gapinlaurent germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT pollockdavid germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice
AT eisenbarthgeorges germlinetrav5d4tcellreceptorsequencetargetsaprimaryinsulinpeptideofnodmice