Clinicopathological diagnosis of mucopolysaccharidosis type IIIB (MPS IIIB; Sanfilippo syndrome B), an inherited autosomal recessive lysosomal storage disease, as a cause of losses in a commercial emu flock and screening breeders using a mutation-specific DNA test are described. Between 2012 and 2015, ∼5-10 juvenile emus from a few weeks to several months of age developed progressive neurological signs and died while others in the flock remained healthy. Necropsy of two affected siblings revealed multiple sites of haemorrhage, cytoplasmic periodic acid-Schiff and Luxol fast blue-positive inclusions in neurons, and aggregates of foamy macrophages in visceral organs. Affected emus were homozygous for the two-base deletion in the α-N-acetylglucosaminidase gene that causes MPS IIIB in emus. Mutation-specific DNA tests for MPS IIIB in emus were developed. Screening blood samples from 78 breeding emus revealed 14 (18%; 9 males, 4 females, and 1 unknown gender) carriers; an overall 0.09 mutant α-N-acetylglucosaminidase allele frequency. A "test and cull male carriers" programme, in which carrier males are culled but carrier females are retained, was proposed to avoid breeding affected emus together, ultimately eliminating the disease from future broods, and preserving the gene pool with as much breeding stock as possible. Molecular genetic diagnostic tests are simple, precise, and permit screening of all breeders for the mutant allele in any flock and can be used to eliminate MPS IIIB-related emu losses through informed breeding.
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http://dx.doi.org/10.1080/03079457.2017.1380293 | DOI Listing |
Case Rep Dent
January 2025
Faculty of Dental Sciences, Beirut Arab University, Beirut, Lebanon.
Mucopolysaccharidosis (MPS) Type III (MPS III) or Sanfilippo syndrome is a rare autosomal recessive inherited metabolic disorder. This disorder is responsible for lysosomal storage disorder at the cellular aspect. Due to lysosomal enzyme perturbance leading to the alteration of macromolecule metabolisms, this cellular perturbance causes multiple severe systemic and mental outcomes.
View Article and Find Full Text PDFBiochim Biophys Acta Mol Basis Dis
January 2025
Alzheimer's Disease Genetics Laboratory, School of Molecular and Biomedical Sciences, Faculty of Sciences, Engineering and Technology, The University of Adelaide, North Terrace Campus, Adelaide, SA 5005, Australia.
Sanfilippo syndrome (mucopolysaccharidosis type III, MPSIII) causes childhood dementia, while Alzheimer's disease is the most common type of adult-onset dementia. There is no cure for either of these diseases, and therapeutic options are extremely limited. Increasing evidence suggests commonalities in the pathogenesis of these diseases.
View Article and Find Full Text PDFInt J Mol Sci
December 2024
Department of Molecular Biology, Faculty of Biology, University of Gdansk, Wita Stwosza 59, 80-308 Gdansk, Poland.
Mucopolysaccharidosis (MPS) comprises a group of inherited metabolic diseases. Each MPS type is caused by a deficiency in the activity of one kind of enzymes involved in glycosaminoglycan (GAG) degradation, resulting from the presence of pathogenic variant(s) of the corresponding gene. All types/subtypes of MPS, which are classified on the basis of all kinds of defective enzymes and accumulated GAG(s), are severe diseases.
View Article and Find Full Text PDFBMJ Case Rep
January 2025
Audiovestibular Medicine, St George's Hospital, London, UK.
A toddler presented to audiovestibular medicine with mild bilateral, sensorineural hearing loss identified via the Newborn Hearing Screening Programme. This report focuses on the early clinical assessment and aetiological investigation which prompted testing for metabolic disease and highlights the parents' perspective. Early investigation led to a relatively early diagnosis of mucopolysaccharidosis (MPS) type IIIA: Sanfilippo disease which enabled the family to access a novel treatment option which otherwise would not have been possible.
View Article and Find Full Text PDFGenetics
December 2024
Department of Genetics and Biochemistry and Center for Human Genetics, Clemson University, 114 Gregor Mendel Circle, Greenwood, SC 29646, USA.
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