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A frameshift mutation in the murine Prkra gene causes dystonia and exhibits abnormal cerebellar development and reduced eIF2α phosphorylation.

Burnett, S. B.; Culver, A. M.; Simon, T. A.; Rowson, T.; Frederick, K.; Palmer, K.; Murray, S.; Davis, S. W.; Patel, R. C.

2024-06-04 molecular biology
10.1101/2024.06.04.597421 bioRxiv
Show abstract

Mutations in Prkra gene, which encodes PACT/RAX cause early onset primary dystonia DYT-PRKRA, a movement disorder that disrupts coordinated muscle movements. PACT/RAX activates protein kinase R (PKR, aka EIF2AK2) by a direct interaction in response to cellular stressors to mediate phosphorylation of the subunit of the eukaryotic translation initiation factor 2 (eIF2). Mice homozygous for a naturally arisen, recessively inherited frameshift mutation, Prkralear-5J exhibit progressive dystonia. In the present study, we investigate the biochemical and developmental consequences of the Prkralear-5J mutation. Our results indicate that the truncated PACT/RAX protein retains its ability to interact with PKR, however, it inhibits PKR activation. Furthermore, mice homozygous for the mutation have abnormalities in the cerebellar development as well as a severe lack of dendritic arborization of Purkinje neurons. Additionally, reduced eIF2 phosphorylation is noted in the cerebellums and Purkinje neurons of the homozygous Prkralear-5J mice. These results indicate that PACT/RAX mediated regulation of PKR activity and eIF2 phosphorylation plays a role in cerebellar development and contributes to the dystonia phenotype resulting from this mutation. Summary StatementThis study shows, for the first time, a role of reduced eIF2 phosphorylation in DYT-PRKRA and the cerebellum development in a mouse model.

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