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Distinct mechanisms survey the structural integrity of HLA-B*27:05 intracellularly and at the surface
Zeynep Hein1, Britta Borchert1, Esam Tolba Abualrous2
1Department of Life Sciences and Chemistry, Jacobs University, Bremen, Germany.
Abstract:
HLA-B*27:05 is associated with the development of autoimmune spondyloarthropathies, but the precise causal relationship between the MHC haplotype and disease pathogenesis is yet to be elucidated. Studies focusing on the structure and cellular trafficking of HLA-B*27:05 implicate several links between the onset of inflammation and the unusual conformations of the molecule inside and at the surface of antigen presenting cells. Several lines of evidence emphasize the emergence of those unnatural protein conformations under conditions where peptide loading onto B*27:05 is impaired. To understand how cellular factors distinguish between poorly loaded molecules from the optimally loaded ones, we have investigated the intracellular transport, folding, and cell surface expression of this particular B27 subtype. Our findings show that B*27:05 is structurally unstable in the absence of peptide, and that an artificially introduced disulfide bond between residues 84 and 139 conferred enhanced conformational stability to the suboptimally loaded molecules. Empty or suboptimally loaded B*27:05 can escape intracellular retention and arrive at the cell surface leading to the appearance of increased number of β2m-free heavy chains. Our study reveals a general mechanism found in the early secretory pathways of murine and human cells that apply to the quality control of MHC class I molecules, and it highlights the allotype-specific structural features of HLA-B*27:05 that can be associated with aberrant antigen presentation and that might contribute to the etiology of disease.
Insights
Human Leukocyte Antigen B*27:05 (HLA-B*27:05) instability without peptide leads to aberrant cell surface presentation, potentially contributing to autoimmune spondyloarthropathies. Enhancing stability via disulfide bonds may offer therapeutic insights.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- The Human Leukocyte Antigen B*27:05 (HLA-B*27:05) allele is strongly associated with autoimmune spondyloarthropathies.
- The exact mechanisms linking HLA-B*27:05 to disease pathogenesis remain unclear, but unusual molecular conformations are implicated.
Purpose of the Study:
- To investigate the intracellular transport, folding, and cell surface expression of HLA-B*27:05.
- To understand how cellular mechanisms differentiate between optimally and suboptimally peptide-loaded MHC class I molecules.
Main Methods:
- Analysis of intracellular transport and folding of HLA-B*27:05.
- Investigating the effect of an introduced disulfide bond on HLA-B*27:05 stability.
- Assessing cell surface expression and beta-2-microglobulin (β2m)-free heavy chains.
Main Results:
- HLA-B*27:05 exhibits structural instability when not bound to a peptide.
- An artificial disulfide bond between residues 84 and 139 enhanced the stability of suboptimally loaded HLA-B*27:05.
- Empty or poorly loaded HLA-B*27:05 molecules can reach the cell surface, increasing β2m-free heavy chains.
Conclusions:
- A general quality control mechanism exists in the secretory pathway for MHC class I molecules.
- Allotype-specific structural features of HLA-B*27:05 contribute to aberrant antigen presentation and may play a role in disease etiology.
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