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Published in: Journal of Inherited Metabolic Disease 5/2016

01-09-2016 | Original Article

Expanding the molecular diversity and phenotypic spectrum of glycerol 3-phosphate dehydrogenase 1 deficiency

Authors: Carlo Dionisi-Vici, Eyal Shteyer, Marcello Niceta, Cristiano Rizzo, Ben Pode-Shakked, Giovanni Chillemi, Alessandro Bruselles, Michela Semeraro, Ortal Barel, Eran Eyal, Nitzan Kol, Yael Haberman, Avishai Lahad, Francesca Diomedi-Camassei, Dina Marek-Yagel, Gideon Rechavi, Marco Tartaglia, Yair Anikster

Published in: Journal of Inherited Metabolic Disease | Issue 5/2016

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Abstract

Transient infantile hypertriglyceridemia (HTGT1; OMIM #614480) is a rare autosomal recessive disorder, which manifests in early infancy with transient hypertriglyceridemia, hepatomegaly, elevated liver enzymes, persistent fatty liver and hepatic fibrosis. This rare clinical entity is caused by inactivating mutations in the GPD1 gene, which encodes the cytosolic isoform of glycerol-3-phosphate dehydrogenase. Here we report on four patients from three unrelated families of diverse ethnic origins, who presented with hepatomegaly, liver steatosis, hypertriglyceridemia, with or without fasting ketotic hypoglycemia. Whole exome sequencing revealed the affected individuals to harbor deleterious biallelic mutations in the GPD1 gene, including the previously undescribed c.806G > A (p.Arg269Gln) and c.640T > C (p.Cys214Arg) mutations. The clinical features in three of our patients showed several differences compared to the original reports. One subject presented with recurrent episodes of fasting hypoglycemia along with hepatomegaly, hypetriglyceridemia, and elevated liver enzymes; the second showed a severe liver disease, with intrahepatic cholestasis associated with kidney involvement; finally, the third presented persistent hypertriglyceridemia at the age of 30 years. These findings expand the current knowledge of this rare disorder, both with regard to the phenotype and molecular basis. The enlarged phenotypic spectrum of glycerol-3-phosphate dehydrogenase 1 deficiency can mimic other inborn errors of metabolism with liver involvement and should alert clinicians to recognize this entity by considering GPD1 mutations in appropriate clinical settings.
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Literature
go back to reference Basel-Vanagaite L, Zevit N, Har Zahav A et al (2012) Transient infantile hypertriglyceridemia, fatty liver, and hepatic fibrosis caused by mutated GPD1, encoding glycerol-3-phosphate dehydrogenase 1. Am J Hum Genet 90(1):49–60CrossRefPubMedCentral Basel-Vanagaite L, Zevit N, Har Zahav A et al (2012) Transient infantile hypertriglyceridemia, fatty liver, and hepatic fibrosis caused by mutated GPD1, encoding glycerol-3-phosphate dehydrogenase 1. Am J Hum Genet 90(1):49–60CrossRefPubMedCentral
go back to reference Brown LJ, Koza RA, Marshall L et al (2002) Lethal hypoglycemic ketosis and glyceroluria in mice lacking both the mitochondrial and the cytosolic glycerol phosphate dehydrogenases. J Biol Chem 277(36):32899–904CrossRefPubMed Brown LJ, Koza RA, Marshall L et al (2002) Lethal hypoglycemic ketosis and glyceroluria in mice lacking both the mitochondrial and the cytosolic glycerol phosphate dehydrogenases. J Biol Chem 277(36):32899–904CrossRefPubMed
go back to reference Cordeddu V, Redeker B, Stellacci E et al (2014) Mutations in ZBTB20 cause Primrose syndrome. Nat Genet 46(8):815–7CrossRefPubMed Cordeddu V, Redeker B, Stellacci E et al (2014) Mutations in ZBTB20 cause Primrose syndrome. Nat Genet 46(8):815–7CrossRefPubMed
go back to reference Dimmock D, Maranda B, Dionisi-Vici C et al (2009) Citrin deficiency, a perplexing global disorder. Mol Genet Metab 96(1):44–9CrossRefPubMed Dimmock D, Maranda B, Dionisi-Vici C et al (2009) Citrin deficiency, a perplexing global disorder. Mol Genet Metab 96(1):44–9CrossRefPubMed
go back to reference Drmanac R, Sparks AB, Callow MJ et al (2010) Human genome sequencing using unchained base reads on self-assembling DNA nanoarrays. Science 327(5961):78–81CrossRefPubMed Drmanac R, Sparks AB, Callow MJ et al (2010) Human genome sequencing using unchained base reads on self-assembling DNA nanoarrays. Science 327(5961):78–81CrossRefPubMed
go back to reference Fiermonte G, Parisi G, Martinelli D et al (2011) A new Caucasian case of neonatal intrahepatic cholestasis caused by citrin deficiency (NICCD): a clinical, molecular, and functional study. Mol Genet Metab 104(4):501–6CrossRefPubMed Fiermonte G, Parisi G, Martinelli D et al (2011) A new Caucasian case of neonatal intrahepatic cholestasis caused by citrin deficiency (NICCD): a clinical, molecular, and functional study. Mol Genet Metab 104(4):501–6CrossRefPubMed
go back to reference Humphrey W, Dalke A, Schulten K (1996) VMD: visual molecular dynamics. J Mol Graph 14(1):27–8CrossRef Humphrey W, Dalke A, Schulten K (1996) VMD: visual molecular dynamics. J Mol Graph 14(1):27–8CrossRef
go back to reference Joshi M, Eagan J, Desai NK et al (2014) A compound heterozygous mutation in GPD1 causes hepatomegaly, steatohepatitis, and hypertriglyceridemia. Eur J Hum Genet 22(10):1229–32CrossRefPubMedPubMedCentral Joshi M, Eagan J, Desai NK et al (2014) A compound heterozygous mutation in GPD1 causes hepatomegaly, steatohepatitis, and hypertriglyceridemia. Eur J Hum Genet 22(10):1229–32CrossRefPubMedPubMedCentral
go back to reference Komatsu M, Yazaki M, Tanaka N et al (2008) Citrin deficiency as a cause of chronic liver disorder mimicking non-alcoholic fatty liver disease. J Hepatol 49(5):810–20CrossRefPubMed Komatsu M, Yazaki M, Tanaka N et al (2008) Citrin deficiency as a cause of chronic liver disorder mimicking non-alcoholic fatty liver disease. J Hepatol 49(5):810–20CrossRefPubMed
go back to reference Kortum F, Caputo V, Bauer CK et al (2015) Mutations in KCNH1 and ATP6V1B2 cause Zimmermann-Laband syndrome. Nat Genet 47(6):661–7CrossRefPubMed Kortum F, Caputo V, Bauer CK et al (2015) Mutations in KCNH1 and ATP6V1B2 cause Zimmermann-Laband syndrome. Nat Genet 47(6):661–7CrossRefPubMed
go back to reference Li MX, Gui HS, Kwan JS et al (2012) A comprehensive framework for prioritizing variants in exome sequencing studies of Mendelian diseases. Nucleic Acids Res 40(7):e53CrossRefPubMedPubMedCentral Li MX, Gui HS, Kwan JS et al (2012) A comprehensive framework for prioritizing variants in exome sequencing studies of Mendelian diseases. Nucleic Acids Res 40(7):e53CrossRefPubMedPubMedCentral
go back to reference MacDonald MJ, Marshall LK (2000) Mouse lacking NAD + -linked glycerol phosphate dehydrogenase has normal pancreatic beta cell function but abnormal metabolite pattern in skeletal muscle. Arch Biochem Biophys 384(1):143–53CrossRefPubMed MacDonald MJ, Marshall LK (2000) Mouse lacking NAD + -linked glycerol phosphate dehydrogenase has normal pancreatic beta cell function but abnormal metabolite pattern in skeletal muscle. Arch Biochem Biophys 384(1):143–53CrossRefPubMed
go back to reference Moriyama M, Fujimoto Y, Rikimaru S et al (2015) Mechanism for increased hepatic glycerol synthesis in the citrin/mitochondrial glycerol-3-phosphate dehydrogenase double-knockout mouse: urine glycerol and glycerol 3-phosphate as potential diagnostic markers of human citrin deficiency. Biochim Biophys Acta 1852(9):1787–95CrossRefPubMed Moriyama M, Fujimoto Y, Rikimaru S et al (2015) Mechanism for increased hepatic glycerol synthesis in the citrin/mitochondrial glycerol-3-phosphate dehydrogenase double-knockout mouse: urine glycerol and glycerol 3-phosphate as potential diagnostic markers of human citrin deficiency. Biochim Biophys Acta 1852(9):1787–95CrossRefPubMed
go back to reference Niceta M, Stellacci E, Gripp KW et al (2015) Mutations impairing GSK3-mediated MAF phosphorylation cause cataract, deafness, intellectual disability, seizures, and a down syndrome-like facies. Am J Hum Genet 96(5):816–25CrossRefPubMedPubMedCentral Niceta M, Stellacci E, Gripp KW et al (2015) Mutations impairing GSK3-mediated MAF phosphorylation cause cataract, deafness, intellectual disability, seizures, and a down syndrome-like facies. Am J Hum Genet 96(5):816–25CrossRefPubMedPubMedCentral
go back to reference Ou X, Ji C, Han X et al (2006) Crystal structures of human glycerol 3-phosphate dehydrogenase 1 (GPD1). J Mol Biol 357(3):858–69CrossRefPubMed Ou X, Ji C, Han X et al (2006) Crystal structures of human glycerol 3-phosphate dehydrogenase 1 (GPD1). J Mol Biol 357(3):858–69CrossRefPubMed
go back to reference Song YZ, Li BX, Chen FP et al (2009) Neonatal intrahepatic cholestasis caused by citrin deficiency: clinical and laboratory investigation of 13 subjects in mainland of China. Dig Liver Dis 41(9):683–9CrossRefPubMed Song YZ, Li BX, Chen FP et al (2009) Neonatal intrahepatic cholestasis caused by citrin deficiency: clinical and laboratory investigation of 13 subjects in mainland of China. Dig Liver Dis 41(9):683–9CrossRefPubMed
go back to reference Song YZ, Deng M, Chen FP et al (2011) Genotypic and phenotypic features of citrin deficiency: five-year experience in a Chinese pediatric center. Int J Mol Med 28(1):33–40 Song YZ, Deng M, Chen FP et al (2011) Genotypic and phenotypic features of citrin deficiency: five-year experience in a Chinese pediatric center. Int J Mol Med 28(1):33–40
go back to reference Wu JW, Yang H, Wang SP et al (2015) Inborn errors of cytoplasmic triglyceride metabolism. J Inherit Metab Dis 38(1):85–98CrossRefPubMed Wu JW, Yang H, Wang SP et al (2015) Inborn errors of cytoplasmic triglyceride metabolism. J Inherit Metab Dis 38(1):85–98CrossRefPubMed
Metadata
Title
Expanding the molecular diversity and phenotypic spectrum of glycerol 3-phosphate dehydrogenase 1 deficiency
Authors
Carlo Dionisi-Vici
Eyal Shteyer
Marcello Niceta
Cristiano Rizzo
Ben Pode-Shakked
Giovanni Chillemi
Alessandro Bruselles
Michela Semeraro
Ortal Barel
Eran Eyal
Nitzan Kol
Yael Haberman
Avishai Lahad
Francesca Diomedi-Camassei
Dina Marek-Yagel
Gideon Rechavi
Marco Tartaglia
Yair Anikster
Publication date
01-09-2016
Publisher
Springer Netherlands
Published in
Journal of Inherited Metabolic Disease / Issue 5/2016
Print ISSN: 0141-8955
Electronic ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-016-9956-7

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