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Pathology of the peripheral neuropathy Charcot-Marie-Tooth disease type 4H in Holstein Friesian cattle with a splice site mutation in FGD4.

Abstract
Charcot-Marie-Tooth disease (CMT) is a hereditary sensory and motor peripheral neuropathy that is one of the most common inherited neurological diseases of humans and may be caused by mutations in a number of different genes. The subtype Charcot-Marie-Tooth disease type 4H (CMT4H) is caused by homozygous mutations in the FGD4 (FYVE, RhoGEF, and PH domain-containing 4) gene. A previous genome-wide association study involving 130,783 dairy cows found 6 novel variants, one of which was a homozygous splice site mutation in the FGD4 gene. Descendants of carriers were genotyped to identify 9 homozygous Holstein Friesian calves that were raised to maturity, of which 5 were euthanized and sampled for histopathology and electron microscopy at 2 and 2.5 years of age. Three control Holstein Friesian animals were raised with the calves and euthanized at the same time points. No macroscopic lesions consistent with CMT4H were seen at necropsy. Microscopically, peripheral nerves were hypercellular due to hyperplasia of S100-positive Schwann cells, and there was onion bulb formation, axonal degeneration with demyelination, and increased thickness of the endoneurium. On electron microscopy, decreased axonal density, onion bulb formations, myelin outfoldings, and increased numbers of mitochondria were present. These changes are consistent with those described in mouse models and humans with CMT4H, making these cattle a potential large animal model for CMT.
AuthorsKeren E Dittmer, Catherine Neeley, Matthew R Perrott, Edwardo Reynolds, Dorian J Garrick, Mathew D Littlejohn
JournalVeterinary pathology (Vet Pathol) Vol. 59 Issue 3 Pg. 442-450 (05 2022) ISSN: 1544-2217 [Electronic] United States
PMID35300540 (Publication Type: Journal Article)
Chemical References
  • Microfilament Proteins
Topics
  • Animals
  • Cattle
  • Cattle Diseases (genetics)
  • Charcot-Marie-Tooth Disease (genetics, pathology, veterinary)
  • Female
  • Genome-Wide Association Study (veterinary)
  • Microfilament Proteins
  • Mutation

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