Molecular basis of autoimmune disease protection by MDA5 variants

Publication date

2025-06

Authors

Singh, Rahul
Joiner, Joe D
Herrero Del Valle, Alba
Zwaagstra, MarleenISNI 0000000493076986
Jobe, Ida
Ferguson, Brian J
van Kuppeveld, FrankISNI 0000000369420196
Modis, Yorgo

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

MDA5 recognizes double-stranded RNA (dsRNA) from viruses and retroelements. Cooperative filament formation and ATP-dependent proofreading confer MDA5 with the necessary sensitivity and specificity for dsRNA. Many MDA5 genetic variants are associated with protection from autoimmune disease while increasing the risk of infection and chronic inflammation. How these variants affect RNA sensing remains unclear. Here, we determine the consequences of autoimmune-protective variants on the molecular structure and activities of MDA5. Rare variants E627 ∗ and I923V reduce the interferon response to picornavirus infection. E627 ∗ does not bind RNA. I923V is ATPase hyperactive, causing premature dissociation from dsRNA. Cryoelectron microscopy (cryo-EM) structures of MDA5 I923V bound to dsRNA at different stages of ATP hydrolysis reveal smaller RNA binding interfaces, leading to excessive proofreading activity. Variants R843H and T946A, which are genetically linked and cause mild phenotypes, did not affect cytokine induction, suggesting an indirect disease mechanism. In conclusion, autoimmune-protective MDA5 variants dampen MDA5-dependent signaling via multiple mechanisms.

Keywords

ATPase, RIG-I-like receptor (RLR), RNA helicase, RNA sensing, autoimmune disease mutations, double-stranded RNA (dsRNA), fitness tradeoff, human genetic variants, innate immunity, molecular mechanism of disease, SDG 3 - Good Health and Well-being

Citation

Singh, R, Joiner, J D, Herrero Del Valle, A, Zwaagstra, M, Jobe, I, Ferguson, B J, van Kuppeveld, F J M & Modis, Y 2025, 'Molecular basis of autoimmune disease protection by MDA5 variants', Cell Reports, vol. 44, no. 6, 115754, pp. 1-17. https://doi.org/10.1016/j.celrep.2025.115754