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Congenital Sucrase-isomaltase Deficiency: Identification of a Common Inuit Founder Mutation

Overview
Journal CMAJ
Date 2014 Dec 3
PMID 25452324
Citations 15
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Abstract

Background: Congenital sucrase-isomaltase deficiency is a rare hereditary cause of chronic diarrhea in children. People with this condition lack the intestinal brush-border enzyme required for digestion of di- and oligosaccharides, including sucrose and isomaltose, leading to malabsorption. Although the condition is known to be highly prevalent (about 5%-10%) in several Inuit populations, the genetic basis for this has not been described. We sought to identify a common mutation for congenital sucrase-isomaltase deficiency in the Inuit population.

Methods: We sequenced the sucrase-isomaltase gene, SI, in a single Inuit proband with congenital sucrase-isomaltase deficiency who had severe fermentative diarrhea and failure to thrive. We then genotyped a further 128 anonymized Inuit controls from a variety of locales in the Canadian Arctic to assess for a possible founder effect.

Results: In the proband, we identified a novel, homozygous frameshift mutation, c.273_274delAG (p.Gly92Leufs*8), predicted to result in complete absence of a functional protein product. This change was very common among the Inuit controls, with an observed allele frequency of 17.2% (95% confidence interval [CI] 12.6%-21.8%). The predicted Hardy-Weinberg prevalence of congenital sucrase-isomaltase deficiency in Inuit people, based on this single founder allele, is 3.0% (95% CI 1.4%-4.5%), which is comparable with previous estimates.

Interpretation: We found a common mutation, SI c.273_274delAG, to be responsible for the high prevalence of congenital sucrase-isomaltase deficiency among Inuit people. Targeted mutation testing for this allele should afford a simple and minimally invasive means of diagnosing this condition in Inuit patients with chronic diarrhea.

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References
1.
Peterson M, Herber R . Intestinal sucrase deficiency. Trans Assoc Am Physicians. 1967; 80:275-83. View

2.
McNair A, Jarnum S, ORRILD L . Sucrose malabsorption in Greenland. Br Med J. 1972; 2(5804):19-21. PMC: 1789071. DOI: 10.1136/bmj.2.5804.19. View

3.
Haworth J . Disaccharide consumption and malabsorption in Canadian Indians. Am J Clin Nutr. 1977; 30(5):698-703. DOI: 10.1093/ajcn/30.5.698. View

4.
Sander P, Alfalah M, Keiser M, Korponay-Szabo I, Kovacs J, Leeb T . Novel mutations in the human sucrase-isomaltase gene (SI) that cause congenital carbohydrate malabsorption. Hum Mutat. 2005; 27(1):119. DOI: 10.1002/humu.9392. View

5.
Langlois K, Findlay L, Kohen D . Dietary habits of Aboriginal children. Health Rep. 2013; 24(4):3-7. View