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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.
Abstract:
Here we report a case of severe growth retardation and neurologic abnormalities in a female gray mouse lemur (Microcebus murinus), a small NHP species for which the genomic sequence recently became available. The female lemur we present here died on postnatal day 125. This lemur had impaired development of motor skills and showed severe ataxia and tremors. In addition, hearing seemed normal whereas ophthalmic examination revealed incipient bilateral cataracts, abnormal pigmentation in the lens of the left eye, and a missing optokinetic nystagmus, which indicated impaired vision. Most prominently, the lemur showed severe growth retardation. Necropsy revealed maldevelopment of the left reproductive organs and unilateral dilation of the right lateral ventricle, which was confirmed on brain MRI. Brain histology further revealed large, bilateral areas of vacuolation within the brainstem, but immunohistochemistry indicated no sign of pathologic prion protein deposition. Full genomic sequencing of the lemur revealed a probably pathologic mutation in LARGE2 of the LARGE gene family, which has been associated with congenital muscular dystrophies. However, potentially functional mutations in other genes were also present. The observed behavioral and motor signs in the presented animal might have been linked to spongiform degeneration and resulting brainstem dysfunction and progressive muscle weakness. The macroscopic developmental abnormalities and ophthalmic findings might be genetic in origin and linked to the mutation in LARGE2.
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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