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Author
- Chitraju, Chandramohan1
- Chung, Wendy K1
- de Heus, Cecilia1
- Farese, Robert V Jr1
- Gluchowski, Nina L1
- Houwen, RoderickHJ1
- Kamin, Daniel S1
- Klumperman, Judith1
- Mejhert, Niklas1
- Middendorp, Sabine1
- Nieuwenhuis, EdwardES1
- Picoraro, Joseph A1
- Pinto, Shirly1
- van Hoesel, Marliek1
- van Rijn, Jorik M1
- van Vugt, AnkeHM1
- Walther, Tobias C1
- Winter, Harland S1
- Xin, Winnie1
JLR Patient-Oriented and Epidemiological Research
2 Results
- Patient-Oriented and Epidemiological ResearchOpen Access
DGAT2 partially compensates for lipid-induced ER stress in human DGAT1-deficient intestinal stem cells
Journal of Lipid ResearchVol. 60Issue 10p1787–1800Published online: July 17, 2019- Jorik M. van Rijn
- Marliek van Hoesel
- Cecilia de Heus
- AnkeH.M. van Vugt
- Judith Klumperman
- EdwardE.S. Nieuwenhuis
- and others
Cited in Scopus: 10Dietary lipids are taken up as FAs by the intestinal epithelium and converted by diacylglycerol acyltransferase (DGAT) enzymes into triglycerides, which are packaged in chylomicrons or stored in cytoplasmic lipid droplets (LDs). DGAT1-deficient patients suffer from vomiting, diarrhea, and protein losing enteropathy, illustrating the importance of this process to intestinal homeostasis. Previously, we have shown that DGAT1 deficiency causes decreased LD formation and resistance to unsaturated FA lipotoxicity in patient-derived intestinal organoids. - Patient-Oriented and Epidemiological ResearchOpen Access
Identification and characterization of a novel DGAT1 missense mutation associated with congenital diarrhea
Journal of Lipid ResearchVol. 58Issue 6p1230–1237Published online: April 3, 2017- Nina L. Gluchowski
- Chandramohan Chitraju
- Joseph A. Picoraro
- Niklas Mejhert
- Shirly Pinto
- Winnie Xin
- and others
Cited in Scopus: 39Acyl-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.