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Polymorphisms of the cell surface receptor control mouse susceptibilities to xenotropic and polytropic leukemia
1Department of Biochemistry, Oregon Health Sciences University, Portland, Oregon 97201-3098, USA.
Abstract:
The differential susceptibilities of mouse strains to xenotropic and polytropic murine leukemia viruses (X-MLVs and P-MLVs, respectively) are poorly understood but may involve multiple mechanisms. Recent evidence has demonstrated that these viruses use a common cell surface receptor (the X-receptor) for infection of human cells. We describe the properties of X-receptor cDNAs with distinct sequences cloned from five laboratory and wild strains of mice and from hamsters and minks. Expression of these cDNAs in resistant cells conferred susceptibilities to the same viruses that naturally infect the animals from which the cDNAs were derived. Thus, a laboratory mouse (NIH Swiss) X-receptor conferred susceptibility to P-MLVs but not to X-MLVs, whereas those from humans, minks, and several wild mice (Mus dunni, SC-1 cells, and Mus spretus) mediated infections by both X-MLVs and P-MLVs. In contrast, X-receptors from the resistant mouse strain Mus castaneus and from hamsters were inactive as viral receptors. These results suggest that X-receptor polymorphisms are a primary cause of resistances of mice to members of the X-MLV/P-MLV family of retroviruses and are responsible for the xenotropism of X-MLVs in laboratory mice. By site-directed mutagenesis, we substituted sequences between the X-receptors of M. dunni and NIH Swiss mice. The NIH Swiss protein contains two key differences (K500E in presumptive extracellular loop 3 [ECL 3] and a T582 deletion in ECL 4) that are both required to block X-MLV infections. Accordingly, a single inverse mutation in the NIH Swiss protein conferred X-MLV susceptibility. Furthermore, expression of an X-MLV envelope glycoprotein in Chinese hamster ovary cells interfered efficiently with X-MLV and P-MLV infections mediated by X-receptors that contained K500 and/or T582 but had no effect on P-MLV infections mediated by X-receptors that lacked these amino acids. In contrast, moderate expression of a P-MLV (MCF247) envelope glycoprotein did not cause substantial interference, suggesting that X-MLV and P-MLV glycoproteins interfere nonreciprocally with X-receptor-mediated infections. We conclude that P-MLVs have become adapted to utilize X-receptors that lack K500 and T582. A penalty for this adaptation is a reduced ability to interfere with superinfection. Because failure of interference is a hallmark of several exceptionally pathogenic retroviruses, we propose that it contributes to P-MLV-induced diseases.
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.