Animal models for demyelination disorders
This invention is in the field of neurology. Specifically, the invention relates to the discovery and characterization of molecular components that play a role in neuronal demyelination or remyelination. In addition, the invention relates to the generation of an animal model that exhibits hypomyelination. The compositions and methods embodied in the present invention are particularly useful for drug screening and/or treatment of demyelination disorders.
1. A viable transgenic mouse whose genome comprises:
(a) a stably integrated transgenic nucleotide sequence encoding interferon-gamma (IFN-γ) operably linked to an inducible promoter; and
(b) a heterozygous knock-out of the endogenous pancreatic endoplasmic reticulum kinase gene (PERK);
wherein upon expression of said IFN-γ, said mouse exhibits a greater degree of demyelination relative to a transgenic mouse having a stably integrated transgenic nucleotide sequence encoding IFN-γ, as in (a), but lacking said heterozygous knock-out of the endogenous PERK gene.
2. The transgenic mouse of claim 1 , wherein said mouse exhibits an increased vulnerability to IFN-γ-mediated neuronal demyelination relative to a wildtype mouse.
3. The transgenic mouse of claim 1 , wherein said mouse has less oligodendrocytes in said mouse's central nervous system relative to that of a wildtype mouse.
4. The transgenic mouse of claim 1 , wherein expression of said IFN-γ is ectopically confined to the central nervous system.
5. A cell obtained from the transgenic mouse of claim 1 .
6. The cell of claim 5 , wherein said cell is from the mouse's nervous system.
7. The cell of claim 5 , wherein said cell is an oligodendrocyte or a Schwann cell.