Progressive multifocal leukoencephalopathy-associated mutations in the JC polyomavirus capsid disrupt lactoseries

Melissa S Maginnis1, Luisa J Ströh, Gretchen V Gee

  • 1Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, RI, USA.

Mbio
|June 14, 2013
PubMed

Insights

Mutations in the JC polyomavirus (JCPyV) major capsid protein (VP1) found in progressive multifocal leukoencephalopathy (PML) patients disrupt sialic acid binding, rendering the virus noninfectious. These findings explain how JCPyV mutations contribute to PML pathogenesis.

Area of Science:

  • Virology
  • Structural Biology
  • Immunology

Background:

  • Human JC polyomavirus (JCPyV) causes progressive multifocal leukoencephalopathy (PML), a fatal demyelinating disease, particularly in immunosuppressed individuals.
  • JCPyV entry into host cells involves binding to lactoseries tetrasaccharide c (LSTc) via its major capsid protein (VP1).
  • PML-associated JCPyV isolates frequently exhibit mutations in the VP1 sialic acid-binding pocket, suggesting adaptive evolution.

Purpose of the Study:

  • To investigate the functional and structural impact of PML-associated VP1 mutations on JCPyV binding and infectivity.
  • To determine if these mutations abolish the interaction with sialic acid motifs necessary for viral entry.

Main Methods:

  • Reconstitution of JCPyV Mad-1 strain with PML-associated VP1 mutations.
  • Expression and purification of recombinant VP1 pentamers carrying mutations.
  • Structural analysis of mutated VP1 pentamers using high-resolution techniques.
  • Infectivity assays using JCPyV pseudoviruses in glial cells.
  • Hemagglutination assays to assess sialic acid binding.

Main Results:

  • JCPyV strains with PML-associated VP1 mutations were not viable.
  • Mutated VP1 pentamers maintained proper folding but lost the ability to bind LSTc due to steric clashes.
  • JCPyV pseudoviruses with these mutations were noninfectious in glial cells.
  • Mutated viruses failed to agglutinate human red blood cells, indicating abolished sialic acid engagement.

Conclusions:

  • Single point mutations in JCPyV VP1 found in PML patients disrupt sialic acid binding.
  • These mutations render JCPyV noninfectious by preventing host cell attachment.
  • The findings suggest that mutated JCPyV may have an alternative role in PML pathogenesis.

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