Literature DB >> 24439110

Mutations in PGAP3 impair GPI-anchor maturation, causing a subtype of hyperphosphatasia with mental retardation.

Malcolm F Howard1, Yoshiko Murakami2, Alistair T Pagnamenta1, Cornelia Daumer-Haas3, Björn Fischer4, Jochen Hecht5, David A Keays6, Samantha J L Knight1, Uwe Kölsch7, Ulrike Krüger8, Steffen Leiz9, Yusuke Maeda2, Daphne Mitchell10, Stefan Mundlos11, John A Phillips10, Peter N Robinson11, Usha Kini12, Jenny C Taylor1, Denise Horn8, Taroh Kinoshita2, Peter M Krawitz13.   

Abstract

Glycosylphophatidylinositol (GPI)-anchored proteins play important roles in many biological processes, and mutations affecting proteins involved in the synthesis of the GPI anchor are reported to cause a wide spectrum of intellectual disabilities (IDs) with characteristic additional phenotypic features. Here, we describe a total of five individuals (from three unrelated families) in whom we identified mutations in PGAP3, encoding a protein that is involved in GPI-anchor maturation. Three siblings in a consanguineous Pakistani family presented with profound developmental delay, severe ID, no speech, psychomotor delay, and postnatal microcephaly. A combination of autozygosity mapping and exome sequencing identified a 13.8 Mb region harboring a homozygous c.275G>A (p.Gly92Asp) variant in PGAP3 region 17q11.2-q21.32. Subsequent testing showed elevated serum alkaline phosphatase (ALP), a GPI-anchored enzyme, in all three affected children. In two unrelated individuals in a cohort with developmental delay, ID, and elevated ALP, we identified compound-heterozygous variants c.439dupC (p.Leu147Profs(∗)16) and c.914A>G (p.Asp305Gly) and homozygous variant c.314C>G (p.Pro105Arg). The 1 bp duplication causes a frameshift and nonsense-mediated decay. Further evidence supporting pathogenicity of the missense mutations c.275G>A, c.314C>G, and c.914A>G was provided by the absence of the variants from ethnically matched controls, phylogenetic conservation, and functional studies on Chinese hamster ovary cell lines. Taken together with recent data on PGAP2, these results confirm the importance of the later GPI-anchor remodelling steps for normal neuronal development. Impairment of PGAP3 causes a subtype of hyperphosphatasia with ID, a congenital disorder of glycosylation that is also referred to as Mabry syndrome.
Copyright © 2014 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 24439110      PMCID: PMC3928656          DOI: 10.1016/j.ajhg.2013.12.012

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  26 in total

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Journal:  Nature       Date:  2011-09-21       Impact factor: 49.962

2.  The phenotype of a germline mutation in PIGA: the gene somatically mutated in paroxysmal nocturnal hemoglobinuria.

Authors:  Jennifer J Johnston; Andrea L Gropman; Julie C Sapp; Jamie K Teer; Jodie M Martin; Cyndi F Liu; Xuan Yuan; Zhaohui Ye; Linzhao Cheng; Robert A Brodsky; Leslie G Biesecker
Journal:  Am J Hum Genet       Date:  2012-02-02       Impact factor: 11.025

3.  The glycosylation of the complement regulatory protein, human erythrocyte CD59.

Authors:  P M Rudd; B P Morgan; M R Wormald; D J Harvey; C W van den Berg; S J Davis; M A Ferguson; R A Dwek
Journal:  Adv Exp Med Biol       Date:  1998       Impact factor: 2.622

4.  Mutations in the glycosylphosphatidylinositol gene PIGL cause CHIME syndrome.

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Journal:  Am J Hum Genet       Date:  2012-03-22       Impact factor: 11.025

Review 5.  GPI-anchor remodeling: potential functions of GPI-anchors in intracellular trafficking and membrane dynamics.

Authors:  Morihisa Fujita; Taroh Kinoshita
Journal:  Biochim Biophys Acta       Date:  2012-01-11

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Journal:  Am J Hum Genet       Date:  2012-06-07       Impact factor: 11.025

7.  PGAP2 is essential for correct processing and stable expression of GPI-anchored proteins.

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Journal:  Mol Biol Cell       Date:  2006-01-11       Impact factor: 4.138

8.  Fatty acid remodeling of GPI-anchored proteins is required for their raft association.

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9.  PGAP2 mutations, affecting the GPI-anchor-synthesis pathway, cause hyperphosphatasia with mental retardation syndrome.

Authors:  Peter M Krawitz; Yoshiko Murakami; Angelika Rieß; Marja Hietala; Ulrike Krüger; Na Zhu; Taroh Kinoshita; Stefan Mundlos; Jochen Hecht; Peter N Robinson; Denise Horn
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10.  Defects in GPI biosynthesis perturb Cripto signaling during forebrain development in two new mouse models of holoprosencephaly.

Authors:  David M McKean; Lee Niswander
Journal:  Biol Open       Date:  2012-07-09       Impact factor: 2.422

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7.  pigk Mutation underlies macho behavior and affects Rohon-Beard cell excitability.

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10.  Pathogenic Variants in PIGG Cause Intellectual Disability with Seizures and Hypotonia.

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Journal:  Am J Hum Genet       Date:  2016-03-17       Impact factor: 11.025

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