bioRxiv · 10.1101/2024.05.12.592631
Structural basis of autoantibody binding in Neuromyelitis Optica
Abstract
Neuromyelitis Optica (NMO) is an autoimmune disease of the central nervous system where pathogenic autoantibodies target the human astrocyte water channel aquaporin-4 causing neurological impairment. Autoantibody binding leads to complement dependent and complement independent cytotoxicity, ultimately resulting in astrocyte death, demyelination, and neuronal loss. Aquaporin-4 assembles in astrocyte plasma membranes as symmetric tetramers or as arrays of tetramers. We report molecular structures of aquaporin-4 alone and bound to Fab fragments from patient-derived NMO autoantibodies using cryogenic electron microscopy. Each antibody binds to epitopes comprised of three extracellular loops of aquaporin-4 with contributions from multiple molecules in the assembly. The structures distinguish between antibodies that bind to the tetrameric form of aquaporin-4, and those targeting higher order orthogonal arrays of tetramers that provide more diverse bridging epitopes. One-Sentence SummaryPathogenic autoantibodies in Neuromyelitis Optica distinguish multiply presented epitopes on arrays of human aquaporin-4.
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Gupta, M., Khandelwal, N. K., Nelson, A., Hwang, P., Pourmal, S., Bennett, J. L., Stroud, R. M.. 2024-05-14. Structural basis of autoantibody binding in Neuromyelitis Optica. https://doi.org/10.1101/2024.05.12.592631
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