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Published on: June 24, 2012
Isolation and molecular characterization of a poliovirus type 1 mutant that replicates in the spinal cords of mice
1Department of Microbiology, Institute of Medical Science, The University of Tokyo, Minato-ku, Tokyo 108-8639, Japan.
Abstract:
The Mahoney strain of poliovirus type 1 (OM) is generally unable to cause paralysis in mice. We isolated a mouse-adapted mutant, PV1/OM-SA (SA), from the spinal cord of a mouse that had been intracerebrally inoculated with OM. SA showed mouse neurovirulence only with intraspinal inoculation, and the infected mice developed a flaccid paralysis, which was indistinguishable from that observed in poliovirus-sensitive transgenic mice inoculated with OM. SA antigens were detected in neurons of the spinal cords of the infected mice. Nucleotide (nt) sequence analysis revealed 9 nt changes on the SA genome, resulting in three amino acid (a.a.) substitutions, i.e., one each in the capsid proteins VP4 and VP1 and in the noncapsid protein 2C. To identify the key mutation site(s) for the mouse neurovirulence, virus recombinants between OM and SA were constructed by using infectious cDNA clones of these two viruses and tested for their mouse neurovirulence after inoculation via an intraspinal route. The results indicated that a mutation at nt 928 (replacement of A with G), resulting in a substitution of Met for Ile at a.a. 62 within VP4, was responsible for conferring the mouse neurovirulence phenotype of the mutant SA. The mutation in VP4 may render the virus accessible to a molecule that acts as a virus receptor and is located on the surfaces of neurons of the mouse spinal cord. This molecule appears not to be expressed in the mouse brain.
Insights
A poliovirus type 1 mutant (SA) causes paralysis in mice after spinal cord inoculation. A specific mutation in the VP4 capsid protein is identified as responsible for this mouse neurovirulence.
Area of Science:
- Virology
- Neuroscience
- Genetics
Background:
- Poliovirus type 1 Mahoney strain (OM) typically does not cause paralysis in mice.
- A mouse-adapted poliovirus mutant, PV1/OM-SA (SA), was isolated from infected mouse spinal cord.
Purpose of the Study:
- To identify the genetic basis of mouse neurovirulence in the SA poliovirus mutant.
- To understand the mechanism of poliovirus entry into mouse spinal cord neurons.
Main Methods:
- Isolation and characterization of a mouse-adapted poliovirus mutant (SA).
- Nucleotide and amino acid sequence analysis of OM and SA strains.
- Construction and testing of intertypic virus recombinants using infectious cDNA clones.
- Intraspinal inoculation of mice to assess neurovirulence.
Main Results:
- The SA mutant induced flaccid paralysis in mice upon intraspinal inoculation.
- Sequence analysis revealed 9 nucleotide changes in SA, leading to 3 amino acid substitutions (VP4, VP1, 2C).
- A single mutation in VP4 (nt 928, A to G; a.a. 62, Met for Ile) was identified as responsible for mouse neurovirulence.
Conclusions:
- A specific VP4 mutation confers neurovirulence to poliovirus in the mouse spinal cord.
- This mutation likely facilitates interaction with a neuronal receptor in the mouse spinal cord, but not the brain.
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