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Polymorphisms of the cell surface receptor control mouse susceptibilities to xenotropic and polytropic leukemia

M Marin1, C S Tailor, A Nouri

  • 1Department of Biochemistry, Oregon Health Sciences University, Portland, Oregon 97201-3098, USA.

Journal of Virology
|October 9, 1999
PubMed

Insights

Mouse strain differences in susceptibility to xenotropic and polytropic murine leukemia viruses (X-MLVs and P-MLVs) are linked to X-receptor gene variations. These polymorphisms are key to understanding retroviral resistance and tropism in mice.

Area of Science:

  • Virology
  • Genetics
  • Immunology

Background:

  • Differential susceptibility of mouse strains to xenotropic and polytropic murine leukemia viruses (X-MLVs and P-MLVs) is not fully understood.
  • Recent studies indicate a common cell surface receptor, the X-receptor, is used by these viruses for human cell infection.
  • Understanding receptor variations is crucial for explaining retroviral tropism and host resistance.

Purpose of the Study:

  • To characterize X-receptor cDNAs from various mouse strains, hamsters, and minks.
  • To investigate the role of X-receptor polymorphisms in mediating susceptibility to X-MLVs and P-MLVs.
  • To elucidate the mechanisms underlying differential viral tropism and host resistance.

Main Methods:

  • Cloning and sequencing of X-receptor cDNAs from different species and mouse strains.
  • Expression of cloned cDNAs in resistant cells to assess viral susceptibility.
  • Site-directed mutagenesis to identify key amino acid residues affecting receptor function.
  • Interference assays using viral envelope glycoproteins.

Main Results:

  • X-receptor variants from susceptible animals conferred susceptibility to specific MLV types.
  • NIH Swiss mouse X-receptor mediated P-MLV but not X-MLV infection; human, mink, and some wild mouse receptors mediated both.
  • Resistant mouse (Mus castaneus) and hamster X-receptors were inactive; specific amino acid differences (K500E, T582 deletion) in NIH Swiss X-receptor blocked X-MLV infection.
  • X-MLV envelope glycoproteins interfered with infections mediated by X-receptors with K500/T582, while P-MLV glycoproteins showed less interference, suggesting nonreciprocal interference.

Conclusions:

  • X-receptor polymorphisms are a primary determinant of mouse resistance to X-MLV/P-MLV retroviruses.
  • Specific amino acid residues in the X-receptor dictate susceptibility to X-MLVs and P-MLVs.
  • P-MLVs likely adapted to X-receptors lacking specific residues, potentially contributing to disease pathogenesis via reduced superinfection interference.

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