Measles fusion machinery is dysregulated in neuropathogenic variants

Eric M Jurgens1, Cyrille Mathieu, Laura M Palermo2

  • 1Department of Pediatrics, Weill Medical College of Cornell University, Ithaca, New York, USA.

Mbio
|February 12, 2015
PubMed
Abstract

Insights

Measles virus (MV) CNS-adapted strains evolved a mutation in the fusion (F) protein, enabling independent activation and enhanced cell entry. This adaptation facilitates spread in immunocompromised individuals, highlighting a potential mechanism for neuropathogenesis.

Area of Science:

  • Virology
  • Molecular Biology
  • Immunology

Background:

  • Measles virus (MV) entry relies on hemagglutinin (H) and fusion (F) proteins.
  • Immunocompromised individuals, particularly those with HIV, are vulnerable to severe MV central nervous system (CNS) disease.
  • Existing measles therapies are limited, especially for severe manifestations.

Purpose of the Study:

  • Investigate the molecular mechanisms behind MV CNS adaptation.
  • Analyze viral evolution in HIV-positive patients with MV CNS infection.
  • Characterize the functional differences in F protein from CNS-adapted MV strains.

Main Methods:

  • Sequence analysis of MV strains from CNS-infected patients.
  • Functional characterization of mutated F proteins.
  • Comparison of fusion activity and thermal stability between wild-type and mutated F proteins.

Main Results:

  • Identified a specific mutation (L454W) in the F protein of CNS-adapted MV.
  • The L454W mutation confers H-independent fusion activation.
  • Mutated F protein exhibits increased fusion activity and reduced thermal stability.

Conclusions:

  • Intrahost evolution of the F protein drives MV CNS adaptation.
  • H-independent fusion machinery enhances viral spread in the CNS.
  • This adaptation may be selected for in immunocompromised hosts, contributing to neuropathogenesis.

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