A compound heterozygous mutation in DPAGT1 results in a congenital disorder of glycosylation with a relatively mild phenotype

被引:0
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作者
Zafar Iqbal
Mohsin Shahzad
Lisenka E L M Vissers
Monique van Scherpenzeel
Christian Gilissen
Attia Razzaq
Muhammad Yasir Zahoor
Shaheen N Khan
Tjitske Kleefstra
Joris A Veltman
Arjan P M de Brouwer
Dirk J Lefeber
Hans van Bokhoven
Sheikh Riazuddin
机构
[1] Nijmegen Centre for Molecular Life Sciences,Department of Human Genetics
[2] Radboud University Nijmegen Medical Center,Department of Laboratory Medicine
[3] National Centre of Excellence in Molecular Biology,Department of Cognitive Neurosciences
[4] University of the Punjab,Department of Neurology
[5] Institute of Genetic and Metabolic Disease,undefined
[6] Radboud University Nijmegen Medical Center,undefined
[7] Donders Institute for Brain,undefined
[8] Cognition and Behaviour,undefined
[9] Radboud University Nijmegen,undefined
[10] Institute of Genetic and Metabolic Disease,undefined
[11] Radboud University Nijmegen Medical Center,undefined
[12] Allama Iqbal Medical College,undefined
[13] The University of Lahore,undefined
来源
关键词
exome sequencing; intellectual disability; congenital disorders of glycosylation; iso-electric focusing; mass spectrometry.;
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摘要
Congenital disorders of glycosylation (CDG) are a large group of recessive multisystem disorders caused by impaired protein or lipid glycosylation. The CDG-I subgroup is characterized by protein N-glycosylation defects originating in the endoplasmic reticulum. The genetic defect is known for 17 different CDG-I subtypes. Patients in the few reported DPAGT1-CDG families exhibit severe intellectual disability (ID), epilepsy, microcephaly, severe hypotonia, facial dysmorphism and structural brain anomalies. In this study, we report a non-consanguineous family with two affected adults presenting with a relatively mild phenotype consisting of moderate ID, epilepsy, hypotonia, aggressive behavior and balance problems. Exome sequencing revealed a compound heterozygous missense mutation, c.85A>T (p.I29F) and c.503T>C (p.L168P), in the DPAGT1 gene. The affected amino acids are located in the first and fifth transmembrane domains of the protein. Isoelectric focusing and high-resolution mass spectrometry analyses of serum transferrin revealed glycosylation profiles that are consistent with a CDG-I defect. Our results show that the clinical spectrum of DPAGT1-CDG is much broader than appreciated so far.
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页码:844 / 849
页数:5
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