Active Lungs & Breathing Infection & Immunity

Using immunopeptidomics and spatial genomics to determine the autoantigen, presenting cells and responding CD8 T cells in ankylosing spondylitis

In plain English

AI plain-English summary

In people with ankylosing spondylitis, the immune system attacks the spine and joints, but no one has yet identified the specific self-molecule that triggers this attack. This matters because ankylosing spondylitis is a painful, progressive autoimmune disease with limited treatment options. A strong genetic link to the immune molecule HLA-B27 has long pointed to a mechanism where the body mistakes one of its own proteins for a foreign invader, but the exact culprit peptide has remained unknown. Without knowing the target, therapies cannot be precisely designed. This project will directly identify which self-peptides HLA-B27 presents in diseased joint tissue, then determine which of those peptides actually provoke a response from CD8 T cells in patients. Using spatial and single-cell sequencing, the team will also map where the presenting cells and responding T cells sit within the tissue. If successful, this research could enable a new class of targeted therapies—including tolerogenic treatments that retrain the immune system to ignore the self-peptide—and diagnostic tools based on the autoantigen. It may also reveal druggable molecules on the specific cells driving the disease, reducing side effects by sparing healthy tissues.

View original technical description
Ankylosing spondylitis (AS) is a debilitating autoimmune disease affecting patients globally with limited and often costly treatment options. Diagnostic delay and higher disease activity are also correlated with poor mental health, especially in young, female and lower-income patients. The strong association of the MHC-class I gene HLA-B27 with AS has led to the arthritogenic peptide hypothesis of disease, where self-peptide presented by HLA-B27 is recognised as foreign by CD8 T cells, thus leading to autoimmunity. My proposal leverages the latest advancements in immunopeptidomics to identify peptides presented by HLA-B27 in AS joint tissue, and establishes which of those peptides are immunogenic in patients. Spatial and droplet-based single-cell sequencing are then used to co-locate and phenotype both cells presenting immunogenic peptides, and their cognate pathogenic T cells. This research could lead to a completely new category of targeted (potentially tolerogenic) therapies and diagnostic tools being developed for AS that require knowledge of AS autoantigen. By also focusing on cells directly participating in the autoimmune response I may further identify druggable targets that would be highly selective for those cells and minimise potential side effects.

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Researchers

Frank Penkava (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Modelling the cellular causes of HLA-B*27 associated spondyloarthritis with single-cell genomics
An integrated functional immunogenomics approach to understanding pathogenesis and improving treatment in ankylosing spondylitis
Functional characterisation of regulatory genetic variants associated with ankylosing spondylitis
Proteomic Biomarkers in Axial Spondyloarthritis
Understanding 3D genome organization in ankylosing spondylitis

Original classification

Early-Career Award

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