Polymorphic tail of HLA-DQ leads to the heterogeneous IL-10 response of antigen-presenting cells

Abstract The cytoplasmic tails of HLA molecules are heterogeneous and polymorphic in terms of length and amino-acid sequences. We previously showed that class II HLA molecules transmitted signals in antigen presentation, and cross-linking HLA-DQ induced the interleukin (IL)-10 response of monocytes via p38MAPK. In this study, cross-linking DQ of B cells led to the phosphorylation of Ser-255 of Hsp90β. Hsp90 and casein kinase (CK) 2 which can catalyze this phosphorylation pattern, were co-immunoprecipitated with DQ. The long-form DQ tail-derived peptides bound to CK2 protein with higher affinity. The crosslinking-induced IL-10 response was suppressed by specific inhibition of Hsp90 and CK2. Furthermore, anti-Hsp90 antibody co-immunoprecipitated mitogen-activated protein kinase kinase kinase 3 (MEKK3) and cerebral cavernous malformations 2 (CCM2), a scaffold for p38MAPK activation. Cross-linking DQ augmented co-immunoprecipitation of MEKK3 with CCM2, in an Hsp90-dependent manner. HLA-DQ thereby qualitatively controls heterogeneous immune responses through its polymorphic tails via HLA-kinase-chaperone-scaffold-MAPK cascade signaling into antigen-presenting cells. Subjects with long-form DQ alleles showed elevated plasma IL-10 and IgG4 levels. These observations shed light on the novel non-classical function of HLA molecules.

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Publication Details

Journal
International Immunology
Published
2026-09-17
DOI
https://doi.org/10.1093/intimm/dxag049
Primary Topic
Heat shock proteins research
Type
article
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article

Polymorphic tail of HLA-DQ leads to the heterogeneous IL-10 response of antigen-presenting cells

Sho Matsushita, Mieko Tokano, Tomoyuki Soma, Masaaki Kawano et al.
International Immunology
Heat shock proteins research
article

Polymorphic tail of HLA-DQ leads to the heterogeneous IL-10 response of antigen-presenting cells

Sho Matsushita, Mieko Tokano, Tomoyuki Soma, Masaaki Kawano, Makoto Nagata, Kazuyuki Nakagome, Rie Takagi
article en

Abstract

Abstract The cytoplasmic tails of HLA molecules are heterogeneous and polymorphic in terms of length and amino-acid sequences. We previously showed that class II HLA molecules transmitted signals in antigen presentation, and cross-linking HLA-DQ induced the interleukin (IL)-10 response of monocytes via p38MAPK. In this study, cross-linking DQ of B cells led to the phosphorylation of Ser-255 of Hsp90β. Hsp90 and casein kinase (CK) 2 which can catalyze this phosphorylation pattern, were co-immunoprecipitated with DQ. The long-form DQ tail-derived peptides bound to CK2 protein with higher affinity. The crosslinking-induced IL-10 response was suppressed by specific inhibition of Hsp90 and CK2. Furthermore, anti-Hsp90 antibody co-immunoprecipitated mitogen-activated protein kinase kinase kinase 3 (MEKK3) and cerebral cavernous malformations 2 (CCM2), a scaffold for p38MAPK activation. Cross-linking DQ augmented co-immunoprecipitation of MEKK3 with CCM2, in an Hsp90-dependent manner. HLA-DQ thereby qualitatively controls heterogeneous immune responses through its polymorphic tails via HLA-kinase-chaperone-scaffold-MAPK cascade signaling into antigen-presenting cells. Subjects with long-form DQ alleles showed elevated plasma IL-10 and IgG4 levels. These observations shed light on the novel non-classical function of HLA molecules.

International Immunology
Saitama Medical University Hospital (JP), Saitama Medical University (JP)
Openalex Percentile: Top 18%
Heat shock proteins research
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Polymorphic tail of HLA-DQ leads to the heterogeneous IL-10 response of antigen-presenting cells — Sho Matsushita, Mieko Tokano, et al. · International Immunology (2026) | TGRS Research Map | TGRS