Spontaneous Spongiform Brainstem Degeneration in a Young Mouse Lemur (Microcebus murinus) with Conspicuous

Daniel Schmidtke1, Charlotte Lempp2, Marko Dubicanac3

  • 1Institute of Zoology, University of Veterinary Medicine Hannover, Hannover, Lower Saxony, Germany; Center for Neuroscience Systems Hannover, Hannover, Lower Saxony, Germany. Daniel.Schmidtke@tiho-hannover.de.

Comparative Medicine
|November 30, 2018
PubMed

Insights

A mouse lemur case study reveals severe growth issues and neurological problems in a young primate. Genetic analysis points to a LARGE2 gene mutation, potentially explaining the developmental abnormalities and brainstem dysfunction.

Area of Science:

  • Primate genetics
  • Non-human primate models
  • Developmental biology

Background:

  • Mouse lemurs (Microcebus murinus) are small primates with a recently available genome sequence.
  • Studying genetic mutations in NHP models offers insights into human diseases.

Observation:

  • A female mouse lemur exhibited severe growth retardation, motor skill deficits (ataxia, tremors), and vision impairment (bilateral cataracts, absent optokinetic nystagmus).
  • Necropsy revealed reproductive organ maldevelopment and unilateral ventricular dilation, confirmed by MRI.
  • Brain histology showed brainstem vacuolation, but no prion protein deposition.

Findings:

  • Whole-genome sequencing identified a likely pathogenic mutation in the LARGE2 gene.
  • This mutation is associated with congenital muscular dystrophies.
  • Other potentially functional gene mutations were also detected.

Implications:

  • The observed neurological and motor signs may stem from spongiform degeneration linked to the LARGE2 mutation.
  • Developmental and ophthalmic abnormalities suggest a genetic origin, potentially related to LARGE2.
  • This case highlights the utility of mouse lemurs for studying genetic disorders affecting development and neurological function.

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