MDA5 multimerization on LINE RNA drives pathogenic extracellular immune complexes in autoimmunity
Hsu, T. Y.-T.; Wang, X.; Isayama, Y.; Jung, V.; Zhang, J.; van Gompel, E.; Maadadi, H.; Torres, C.; Shimazaki-Takahashi, A.; Kurihara, N.; Kondo, M.; Galesic, M.; Notarnicola, A.; Sultana, S.; Maeda, A.; Vleugels, R. A.; Dellaripa, P. F.; Yamashita, T.; Ito, Y.; Awaji, K.; Kotani, H.; Matsuda, K. M.; Horuluogu, B.; Grönwall, C.; Joshua, V.; Ukai, Y.; Hosomi, N.; Wagner, D. D.; Lundberg, I. E.; Kato, K.; Hur, S.
Show abstract
Autoantibodies are hallmarks of many autoimmune diseases, but their potential pathogenic roles, particularly for those targeting intracellular proteins, remain unclear. Anti-MDA5-positive dermatomyositis (anti-MDA5 DM) is characterized by autoantibodies against the intracellular protein MDA51,2, a conserved innate immune receptor that recognizes viral dsRNA by forming filaments3. Here, using four patient-derived monoclonal autoantibodies (mAbs), we reconstitute and define the molecular architecture, biogenesis, and immunological activity of pathogenic MDA5 immune complexes. Our cryo-EM analysis revealed that these mAbs bind dsRNA-scaffolded MDA5 filaments in at least two distinct binding modes, each exhibiting striking epitope convergence. Extracellular immune complexes formed between mAbs and filamentous, but not monomeric, MDA5 potently activate multiple innate immune pathways, with the magnitude of activation determined by antibody binding mode and immune-complex stoichiometry. Antibody bivalency further crosslinks MDA5 filaments into higher-order aggregates with heightened immunostimulatory activity, demonstrating an active role of autoantibodies in shaping immune complex architecture. Analysis of patient plasma reveals elevated levels of extracellular MDA5 filaments and identifies LINE retroelement-derived dsRNA as a structural scaffold. Notably, MDA5 immune complexes induce endogenous LINE dsRNA expression, likely promoting additional MDA5 filament formation and extracellular release through inflammatory cell death. These data thus support a self-amplifying inflammatory cycle as a pathogenic mechanism for anti-MDA5 DM. Collectively, our study defines a broadly applicable architectural principle, in which higher-order organization and binding modes of autoantibodies--beyond antibody affinity or nucleic acid presence alone--govern innate immune activation.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Convergent Antibody Responses to SARS-CoV-2 Infection in Convalescent Individuals 98%
- Bacterial inhibition of CD8+ T-cells mediated cell death promotes neuroinvasion and within-host persistence 98%
- A novel RORγt+ antigen presenting cell type instructs microbiota-dependent regulatory T cell differentiation and tolerance during early life 98%
Similar papers in this journal
Similar papers in this journal
- Transcriptional Feedback Disruption Yields Escape-Resistant Antivirals 97%
- Temporal stability of human sperm mosaic mutations results in life-long threat of transmission to offspring 97%
- Isthmus progenitor cells contribute to homeostatic cellular turnover and support regeneration following intestinal injury 97%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.