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Determinants of organ tropism of sendai virus

M Tashiro1, N L McQueen, J T Seto

  • 1Department of Viral Diseases and Vaccine Control, National Institute of Infectious Diseases, Tokyo, 208-0011 Japan. mtashiro@nih.go.jp

Insights

Sendai virus pantropism is determined by mutations in fusion (F) and matrix (M) proteins. These mutations enhance F protein cleavage and cause bipolar budding, altering viral spread in mice.

Area of Science:

  • Virology
  • Molecular Biology
  • Pathogenesis

Background:

  • Wild-type Sendai virus exhibits limited tropism, primarily infecting the lungs (pneumotropic) in mice.
  • Persistent Sendai virus infections in cell cultures can yield mutants with altered host range.
  • Previous studies identified pantropic mutants, such as F1-R, with a broader tissue tropism.

Purpose of the Study:

  • To identify the genetic determinants responsible for the pantropic phenotype of Sendai virus mutants.
  • To elucidate the molecular mechanisms underlying enhanced viral spread and tissue tropism.

Main Methods:

  • Isolation and characterization of Sendai virus mutants from persistently infected cells.
  • Genome sequencing of isolated mutants to identify genetic alterations.
  • Analysis of viral protein mutations, focusing on the fusion (F) and matrix (M) proteins.
  • Assessment of viral replication and budding in polarized epithelial cells and mouse tissues.

Main Results:

  • Mutations in the fusion (F) protein, particularly at residue 115 (Ser to Pro), enhance F protein cleavage and contribute to pantropism.
  • Two mutations in the matrix (M) protein (residues 128 and 210) are associated with bipolar budding in polarized epithelial cells.
  • Bipolar budding and enhanced microtubule disruption are linked to the mutated M protein and contribute to the pantropic phenotype.

Conclusions:

  • The pantropic nature of Sendai virus F1-R mutant is multifactorial, involving enhanced protease activation of the F protein and altered M protein function.
  • Mutations in the M protein leading to bipolar budding are crucial for efficient viral dissemination in polarized epithelia.
  • Understanding these determinants provides insights into viral pathogenesis and host-pathogen interactions.

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