Literature DB >> 8931340

Novel structural features of the human histocompatibility molecules HLA-DQ as revealed by modeling based on the published structure of the related molecule HLA-DR.

K Paliakasis1, J Routsias, K Petratos, C Ouzounis, M Kokkinidis, G K Papadopoulos.   

Abstract

Structural modeling of the HLA-DQ molecules, a group of human histocompatibility antigens linked to autoimmune diseases and immunosuppression-based on the structure of the homologous molecule DR1, has revealed an overall shape typical of the class II histocompatibility molecules, yet with several novel features. These are unique to HLA-DQ and include: (1) an antigen-binding groove with a polymorphic first pocket and anchoring in the second and/or fifth pocket, (2) a polymorphic beta 49-56 dimerization patch, and (3) in many alleles a prominent Arg-Gly-Asp loop (beta 167-169), probably involved in cell adhesion, as it exhibits an architecture similar to identical sequences involved in such function. The alpha 2 beta 2 dimerisation domain and the CD4-binding region are nearly identical to their counterparts in the structure of HLA-DR1. The significance of the few substitutions in the CD-4 binding region remains to be evaluated. The polymorphic first antigen-binding pocket and the anchoring in the second and/or fifth pocket point to differences in antigenic fragment selection compared to HLA-DR antigens, while the polymorphism in the beta 49-56 homodimerization patch implies either ease of spontaneous or T lymphocyte receptor-induced homodimerization or difficulty in the latter. As homodimerization appears to be an obligatatory intermediate in the activation of cognate DQ-restricted T lymphocytes and DQ-bearing antigen-presenting cells, the dimerization properties of DQ allels signify the respective ease or difficulty of activation of these two cell types. The RGD loop confers cell adhesion possibilities to those DQ allels that possess it, yet its putative ligand cannot be defined at present. These features are suggestive of the probable mechanisms through which some of the unique immunological properties of the HLA-DQ molecules are effected.

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Year:  1996        PMID: 8931340     DOI: 10.1006/jsbi.1996.0079

Source DB:  PubMed          Journal:  J Struct Biol        ISSN: 1047-8477            Impact factor:   2.867


  7 in total

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2.  Polymorphism and selection in the major histocompatibility complex DRA and DQA genes in the family Equidae.

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4.  Next-Generation HLA Sequence Analysis Uncovers Seven HLA-DQ Amino Acid Residues and Six Motifs Resistant to Childhood Type 1 Diabetes.

Authors:  Lue Ping Zhao; George K Papadopoulos; William W Kwok; Antonis K Moustakas; George P Bondinas; Annelie Carlsson; Helena Elding Larsson; Johnny Ludvigsson; Claude Marcus; Ulf Samuelsson; Ruihan Wang; Chul-Woo Pyo; Wyatt C Nelson; Daniel E Geraghty; Åke Lernmark
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5.  The spectrum of HLA-DQ and HLA-DR alleles, 2006: a listing correlating sequence and structure with function.

Authors:  George P Bondinas; Antonis K Moustakas; George K Papadopoulos
Journal:  Immunogenetics       Date:  2007-05-12       Impact factor: 2.846

6.  Low major histocompatibility complex class II DQA diversity in the Giant Panda (Ailuropoda melanoleuca).

Authors:  Liang Zhu; Xiang-Dong Ruan; Yun-Fa Ge; Qiu-Hong Wan; Sheng-Guo Fang
Journal:  BMC Genet       Date:  2007-06-07       Impact factor: 2.797

7.  Positive selection in coding regions and motif duplication in regulatory regions of bottlenose dolphin MHC class II genes.

Authors:  Heidi J T Pagán; Tatiana Ferrer; Greg O'Corry-Crowe
Journal:  PLoS One       Date:  2018-09-25       Impact factor: 3.240

  7 in total

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