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Identification and characterization of a novel DGAT1 missense mutation associated with congenital diarrhea
Institution:2. Department of Genetics and Complex Diseases, Harvard T. H. Chan School of Public Health, Boston, MA 02115;4. Harvard Medical School, Boston, MA 02115;11. Merck & Co., Inc., Kenilworth, NJ 07033;8. Department of Neurology, Massachusetts General Hospital, Boston, MA 02114;112. Departments of Pediatrics and Medicine, Columbia University Medical Center, New York, NY 10027;84. Broad Institute of Harvard and Massachusetts Institute of Technology, Cambridge, MA 02142
Abstract:Acyl-CoA:diacylglycerol acyltransferase (DGAT)1 and DGAT2 catalyze triglyceride (TG) biosynthesis in humans. Biallelic loss-of-function mutations in human DGAT1 result in severe congenital diarrhea and protein-losing enteropathy. Additionally, pharmacologic inhibition of DGAT1 led to dose-related diarrhea in human clinical trials. Here we identify a previously unknown DGAT1 mutation in identical twins of South Asian descent. These male patients developed watery diarrhea shortly after birth, with protein-losing enteropathy and failure to thrive. Exome sequencing revealed a homozygous recessive mutation in DGAT1, c.314T>C, p.L105P. We show here that the p.L105P DGAT1 enzyme produced from the mutant allele is less abundant, resulting in partial loss of TG synthesis activity and decreased formation of lipid droplets in patient-derived primary dermal fibroblasts. Thus, in contrast with complete loss-of-function alleles of DGAT1, the p.L105P missense allele partially reduces TG synthesis activity and causes a less severe clinical phenotype. Our findings add to the growing recognition of DGAT1 deficiency as a cause of congenital diarrhea with protein-losing enteropathy and indicate that DGAT1 mutations result in a spectrum of diseases.
Keywords:protein-losing enteropathy  intestine  genetics  triglycerides  lipid droplets  diet and dietary lipids  acyl CoA:diacylglycerol acyltransferase
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