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Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles

BACKGROUND: Selective intestinal cobalamin malabsorption with mild proteinuria (Imerslund‐Gräsbeck syndrome; I‐GS), is an autosomal recessive disorder of dogs caused by mutations in AMN or CUBN that disrupt cubam function and which can present as a medical emergency. OBJECTIVES: To describe the clin...

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Autores principales: Fyfe, J.C., Hemker, S.L., Venta, P.J., Stebbing, B., Giger, U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3959579/
https://www.ncbi.nlm.nih.gov/pubmed/24433284
http://dx.doi.org/10.1111/jvim.12284
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author Fyfe, J.C.
Hemker, S.L.
Venta, P.J.
Stebbing, B.
Giger, U.
author_facet Fyfe, J.C.
Hemker, S.L.
Venta, P.J.
Stebbing, B.
Giger, U.
author_sort Fyfe, J.C.
collection PubMed
description BACKGROUND: Selective intestinal cobalamin malabsorption with mild proteinuria (Imerslund‐Gräsbeck syndrome; I‐GS), is an autosomal recessive disorder of dogs caused by mutations in AMN or CUBN that disrupt cubam function and which can present as a medical emergency. OBJECTIVES: To describe the clinical, metabolic, and genetic bases of I‐GS in Beagles. ANIMALS: Four cobalamin‐deficient and 43 clinically normal Beagles and 5 dogs of other breeds. METHODS: Clinical description and candidate gene genetic study. Urinary organic acid and protein excretion were determined by gas‐chromatography and SDS‐PAGE, respectively. Renal cubilin protein expression was assessed on immunoblots. Mutation discovery was carried out by PCR amplification and DNA sequencing of exons with flanking splice sites and cDNA of CUBN and AMN. Genotyping was performed by restriction enzyme digestion of PCR amplicons. RESULTS: Juvenile‐affected Beagles exhibited failure to thrive, dyshematopoiesis with neutropenia, serum cobalamin deficiency, methylmalonic aciduria, hyperammonemia, and proteinuria. Affected dogs' kidneys lacked detectable cubilin protein. All affected dogs were homozygous for a single‐base deletion in CUBN exon 8 (CUBN c.786delC), predicting a translational frameshift, and the 2 parents tested were heterozygous. CONCLUSIONS: The CUBN mutation in juvenile I‐GS Beagles causes a more severe cobalamin malabsorption than in Border Collies with a different CUBN defect, but is similar to I‐GS caused by AMN mutations in Giant Schnauzers and Australian Shepherds. Awareness of the disorder and breed predispositions to I‐GS is crucial to precisely diagnose and promptly treat hereditary cobalamin malabsorption and to prevent disease in those dogs at risk in future generations.
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spelling pubmed-39595792015-03-01 Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles Fyfe, J.C. Hemker, S.L. Venta, P.J. Stebbing, B. Giger, U. J Vet Intern Med Standard Articles BACKGROUND: Selective intestinal cobalamin malabsorption with mild proteinuria (Imerslund‐Gräsbeck syndrome; I‐GS), is an autosomal recessive disorder of dogs caused by mutations in AMN or CUBN that disrupt cubam function and which can present as a medical emergency. OBJECTIVES: To describe the clinical, metabolic, and genetic bases of I‐GS in Beagles. ANIMALS: Four cobalamin‐deficient and 43 clinically normal Beagles and 5 dogs of other breeds. METHODS: Clinical description and candidate gene genetic study. Urinary organic acid and protein excretion were determined by gas‐chromatography and SDS‐PAGE, respectively. Renal cubilin protein expression was assessed on immunoblots. Mutation discovery was carried out by PCR amplification and DNA sequencing of exons with flanking splice sites and cDNA of CUBN and AMN. Genotyping was performed by restriction enzyme digestion of PCR amplicons. RESULTS: Juvenile‐affected Beagles exhibited failure to thrive, dyshematopoiesis with neutropenia, serum cobalamin deficiency, methylmalonic aciduria, hyperammonemia, and proteinuria. Affected dogs' kidneys lacked detectable cubilin protein. All affected dogs were homozygous for a single‐base deletion in CUBN exon 8 (CUBN c.786delC), predicting a translational frameshift, and the 2 parents tested were heterozygous. CONCLUSIONS: The CUBN mutation in juvenile I‐GS Beagles causes a more severe cobalamin malabsorption than in Border Collies with a different CUBN defect, but is similar to I‐GS caused by AMN mutations in Giant Schnauzers and Australian Shepherds. Awareness of the disorder and breed predispositions to I‐GS is crucial to precisely diagnose and promptly treat hereditary cobalamin malabsorption and to prevent disease in those dogs at risk in future generations. John Wiley and Sons Inc. 2014-01-16 2014 /pmc/articles/PMC3959579/ /pubmed/24433284 http://dx.doi.org/10.1111/jvim.12284 Text en Copyright © 2014 by the American College of Veterinary Internal Medicine
spellingShingle Standard Articles
Fyfe, J.C.
Hemker, S.L.
Venta, P.J.
Stebbing, B.
Giger, U.
Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title_full Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title_fullStr Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title_full_unstemmed Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title_short Selective Intestinal Cobalamin Malabsorption with Proteinuria (Imerslund‐Gräsbeck Syndrome) in Juvenile Beagles
title_sort selective intestinal cobalamin malabsorption with proteinuria (imerslund‐gräsbeck syndrome) in juvenile beagles
topic Standard Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3959579/
https://www.ncbi.nlm.nih.gov/pubmed/24433284
http://dx.doi.org/10.1111/jvim.12284
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