bioRxiv · 10.1101/2020.07.14.203281
Antibody Escape by Polyomavirus Capsid Mutation Facilitates Neurovirulence
Abstract
JCPyV polyomavirus, a member of the human virome, causes Progressive Multifocal Leukoencephalopathy (PML), an oft-fatal demyelinating brain disease in individuals receiving immunomodulatory therapies. Mutations in the major viral capsid protein, VP1, are common in JCPyV from PML patients (JCPyV-PML) but whether they confer neurovirulence or escape from virus-neutralizing antibody (nAb) in vivo is unknown. A mouse polyomavirus (MuPyV) with a sequence-equivalent JCPyV-PML VP1 mutation replicated poorly in the kidney, a major reservoir for JCPyV persistence, but retained the CNS infectivity, cell tropism, and neuropathology of the parental virus. This mutation rendered MuPyV resistant to a monoclonal Ab (mAb), whose specificity overlapped the endogenous anti-VP1 response. Using cryo EM and a custom subvolume refinement approach, we resolved an MuPyV:Fab complex map to 3.1 [A] resolution. The structure revealed the mechanism of mAb evasion. Our findings demonstrate convergence between nAb evasion and CNS neurovirulence in vivo by a frequent JCPyV-PML VP1 mutation.
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Lauver, M. D., Goetschius, D. J., Netherby-Winslow, C. S., Ayers, K. N., Jin, G., Haas, D. G., Frost, E. L., Cho, S. H., Bator, C. M., Bywaters, S. M., Christensen, N. D., Hafenstein, S. L., Lukacher, A. E.. 2020-07-15. Antibody Escape by Polyomavirus Capsid Mutation Facilitates Neurovirulence. https://doi.org/10.1101/2020.07.14.203281
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