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February 27, 20260 citationsOpen Access

Mutation in Prkra Results in Cerebellar Abnormality and Reduced elF2α Phosphorylation in a Model Of DYT-PRKRA

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SBSamuel B. BurnettUniversity of South CarolinaACAllison M. CulverUniversity of South CarolinaTSTricia A. SimonUniversity of South Carolina

Key Points

  • The study aims to understand the effects of the Prkralear-5J mutation on cerebellar development and eIF2α phosphorylation.
  • Investigated biochemical and developmental effects of the Prkralear-5J mutation in mice.
  • Analyzed PKR activity and its interaction with truncated PACT protein.
  • Examined cerebellar structure and Purkinje neuron morphology.
  • Mice with Prkralear-5J mutation exhibit cerebellar abnormalities.
  • Truncated PACT/RAX inhibits PKR activation despite maintaining its interaction.
  • Dendritic arborization of Purkinje neurons is severely reduced.
  • Notable decrease in eIF2α phosphorylation in cerebellum and Purkinje neurons.

Abstract

Variants in the PRKRA gene, which encodes PACT, cause the early-onset primary dystonia DYT-PRKRA, a movement disorder associated with disruption of coordinated muscle movements. PACT and its murine homolog RAX activate protein kinase R (PKR; also known as EIF2AK2) by a direct interaction in response to cellular stressors to mediate phosphorylation of the α subunit of eukaryotic translation initiation factor 2 (eIF2α). Mice homozygous for a naturally arisen, recessively inherited frameshift mutation, Prkralear-5J, exhibit progressive dystonia. In the present study, we investigated the biochemical and developmental consequences of the Prkralear-5J mutation. Our results indicated that the truncated PACT/RAX protein retains its ability to interact with PKR but inhibits PKR activation. Mice homozygous for the mutation showed abnormalities in cerebellar development as well as a severe lack of dendritic arborization of Purkinje neurons. Additionally, reduced eIF2α phosphorylation was noted in the cerebellum and Purkinje neurons of the homozygous Prkralear-5J mice. These findings indicate that PACT/RAX-mediated regulation of PKR activity and eIF2α phosphorylation plays a role in cerebellar development and contributes to the dystonia phenotype resulting from the Prkralear-5J mutation.

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Cite This Study

Burnett et al. (2024) studied this question.

synapsesocial.com/papers/69a13571ed1d949a99abf464https://doi.org/10.1242/dmm.050929">https://doi.org/10.1242/dmm.050929</a></p
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