In HLA-DQ8-associated celiac disease, TRAV26-2+-TRBV9+ and TRAV8-3+-TRBV6+ T cells recognize the immunodominant DQ8-glia-α1 epitope, whereupon a non-germline-encoded arginine residue played a key role in binding HLA-DQ8-glia-α1. Whether distinct T cell receptor (TCR) recognition modes exist for gliadin epitopes remains unclear. TCR repertoire analysis revealed populations of HLA-DQ8-glia-α1 and HLA-DQ8.5-glia-γ1 restricted TRAV20+-TRBV9+ T cells that did not possess a non-germline-encoded arginine residue. The crystal structures of a TRAV20+-TRBV9+ TCR-HLA-DQ8-glia-α1 complex and two TRAV20+-TRBV9+ TCR-HLA-DQ8.5-glia-γ1 complexes were determined. This revealed that the differential specificity toward DQ8-glia-α1 and DQ8.5-glia-γ1 was govern...
Because susceptibility to celiac disease is associated strongly with HLA-DQ2 (DQA1*05/DQB1*02) and w...
Initial studies associated the HLA class I A*01 and B*08 alleles with celiac disease (CD) susceptibi...
An individual's T cell repertoire is skewed towards some specificities as a result of past antigen e...
In HLA-DQ8-associated celiac disease, TRAV26-2+-TRBV9+ and TRAV8-3+-TRBV6+ T cells recognize the imm...
Celiac disease is a T cell–mediated disease induced by dietary gluten, a component of which is gliad...
SummaryCeliac disease is a human leukocyte antigen (HLA)-DQ2- and/or DQ8-associated T cell-mediated ...
CD4+ T cells recognizing dietary gluten epitopes in the context of disease-associated human leukocyt...
Selection of biased T cell receptor (TCR) repertoires across individuals is seen in both infectious ...
Celiac disease (CeD) provides an opportunity to study the specificity underlying human T-cell respon...
Gluten-specific CD4+ T cells are drivers of celiac disease (CeD). Previous studies of gluten-specifi...
Abstract Celiac disease is an auto-immune disease in which an immune response to dietary gluten lead...
Celiac disease is an auto-immune disease in which an immune response to dietary gluten leads to infl...
Structural, biochemical and cellular analyses show that bacterial antigens can mimic gliadin epitope...
A hallmark of celiac disease (CeD), a chronic condition driven by cereal gluten exposure, is increas...
The highly homologous human leukocyte antigen (HLA)-DQ2 molecules, HLA-DQ2.5 and HLA-DQ2.2, are impl...
Because susceptibility to celiac disease is associated strongly with HLA-DQ2 (DQA1*05/DQB1*02) and w...
Initial studies associated the HLA class I A*01 and B*08 alleles with celiac disease (CD) susceptibi...
An individual's T cell repertoire is skewed towards some specificities as a result of past antigen e...
In HLA-DQ8-associated celiac disease, TRAV26-2+-TRBV9+ and TRAV8-3+-TRBV6+ T cells recognize the imm...
Celiac disease is a T cell–mediated disease induced by dietary gluten, a component of which is gliad...
SummaryCeliac disease is a human leukocyte antigen (HLA)-DQ2- and/or DQ8-associated T cell-mediated ...
CD4+ T cells recognizing dietary gluten epitopes in the context of disease-associated human leukocyt...
Selection of biased T cell receptor (TCR) repertoires across individuals is seen in both infectious ...
Celiac disease (CeD) provides an opportunity to study the specificity underlying human T-cell respon...
Gluten-specific CD4+ T cells are drivers of celiac disease (CeD). Previous studies of gluten-specifi...
Abstract Celiac disease is an auto-immune disease in which an immune response to dietary gluten lead...
Celiac disease is an auto-immune disease in which an immune response to dietary gluten leads to infl...
Structural, biochemical and cellular analyses show that bacterial antigens can mimic gliadin epitope...
A hallmark of celiac disease (CeD), a chronic condition driven by cereal gluten exposure, is increas...
The highly homologous human leukocyte antigen (HLA)-DQ2 molecules, HLA-DQ2.5 and HLA-DQ2.2, are impl...
Because susceptibility to celiac disease is associated strongly with HLA-DQ2 (DQA1*05/DQB1*02) and w...
Initial studies associated the HLA class I A*01 and B*08 alleles with celiac disease (CD) susceptibi...
An individual's T cell repertoire is skewed towards some specificities as a result of past antigen e...