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Failure to cleave measles virus fusion protein in lymphoid cells

Insights

Measles virus fusion protein cleavage is crucial for infectious virus production in lymphoid cells. Cells lacking this host-directed cleavage produce noninfectious virus, impacting viral persistence.

Area of Science:

  • Virology
  • Cell Biology
  • Immunology

Background:

  • Measles virus persistence in lymphoid cells is not fully understood.
  • Host cell mechanisms can influence viral replication and infectivity.
  • Cleavage of viral fusion protein is a key step in the measles virus life cycle.

Purpose of the Study:

  • To investigate the host-directed cleavage of measles virus fusion protein (F(0) to F(1)) in infected lymphoid cells.
  • To understand the role of this cleavage in viral persistence and infectious virus production in vivo.

Main Methods:

  • Infection of various lymphoblastoid cell lines with measles virus.
  • Radiolabeling of viral glycoproteins and analysis of fusion protein cleavage using SDS-PAGE.
  • Cell fusion experiments and enzymatic treatment (trypsin) to assess cleavage competence.

Main Results:

  • Lymphoid cells varied in their ability to cleave measles virus fusion protein.
  • Cells deficient in fusion protein cleavage (e.g., Daudi, Ramos) produced low titers of infectious virus.
  • Cleavage-competent cells produced significantly more infectious virus, and cleavage could be mimicked by trypsin treatment.

Conclusions:

  • Host cell plasma membrane enzyme activity is critical for measles virus fusion protein cleavage.
  • Deficiency in this cleavage leads to the production of mostly noninfectious measles virus particles.
  • This host-directed cleavage mechanism influences measles virus replication and persistence in lymphoid tissues.

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