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The genotypic and phenotypic spectrum of PIGA deficiency

BACKGROUND: Phosphatidylinositol glycan biosynthesis class A protein (PIGA) is one of the enzymes involved in the biosynthesis of glycosylphosphatidylinositol (GPI) anchor proteins, which function as enzymes, adhesion molecules, complement regulators and co-receptors in signal transduction pathways....

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Autores principales: Tarailo-Graovac, Maja, Sinclair, Graham, Stockler-Ipsiroglu, Sylvia, Van Allen, Margot, Rozmus, Jacob, Shyr, Casper, Biancheri, Roberta, Oh, Tracey, Sayson, Bryan, Lafek, Mirafe, Ross, Colin J, Robinson, Wendy P, Wasserman, Wyeth W, Rossi, Andrea, van Karnebeek, Clara DM
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348372/
https://www.ncbi.nlm.nih.gov/pubmed/25885527
http://dx.doi.org/10.1186/s13023-015-0243-8
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author Tarailo-Graovac, Maja
Sinclair, Graham
Stockler-Ipsiroglu, Sylvia
Van Allen, Margot
Rozmus, Jacob
Shyr, Casper
Biancheri, Roberta
Oh, Tracey
Sayson, Bryan
Lafek, Mirafe
Ross, Colin J
Robinson, Wendy P
Wasserman, Wyeth W
Rossi, Andrea
van Karnebeek, Clara DM
author_facet Tarailo-Graovac, Maja
Sinclair, Graham
Stockler-Ipsiroglu, Sylvia
Van Allen, Margot
Rozmus, Jacob
Shyr, Casper
Biancheri, Roberta
Oh, Tracey
Sayson, Bryan
Lafek, Mirafe
Ross, Colin J
Robinson, Wendy P
Wasserman, Wyeth W
Rossi, Andrea
van Karnebeek, Clara DM
author_sort Tarailo-Graovac, Maja
collection PubMed
description BACKGROUND: Phosphatidylinositol glycan biosynthesis class A protein (PIGA) is one of the enzymes involved in the biosynthesis of glycosylphosphatidylinositol (GPI) anchor proteins, which function as enzymes, adhesion molecules, complement regulators and co-receptors in signal transduction pathways. Until recently, only somatic PIGA mutations had been reported in patients with paroxysmal nocturnal hemoglobinuria (PNH), while germline mutations had not been observed, and were suspected to result in lethality. However, in just two years, whole exome sequencing (WES) analyses have identified germline PIGA mutations in male patients with XLIDD (X-linked intellectual developmental disorder) with a wide spectrum of clinical presentations. METHODS AND RESULTS: Here, we report on a new missense PIGA germline mutation [g.15342986C>T (p.S330N)] identified via WES followed by Sanger sequencing, in a Chinese male infant presenting with developmental arrest, infantile spasms, a pattern of lesion distribution on brain MRI resembling that typical of maple syrup urine disease, contractures, dysmorphism, elevated alkaline phosphatase, mixed hearing loss (a combination of conductive and sensorineural), liver dysfunction, mitochondrial complex I and V deficiency, and therapy-responsive dyslipidemia with confirmed lipoprotein lipase deficiency. X-inactivation studies showed skewing in the clinically unaffected carrier mother, and CD109 surface expression in patient fibroblasts was 57% of that measured in controls; together these data support pathogenicity of this mutation. Furthermore, we review all reported germline PIGA mutations (1 nonsense, 1 frameshift, 1 in-frame deletion, five missense) in 8 unrelated families. CONCLUSIONS: Our case further delineates the heterogeneous phenotype of this condition for which we propose the term ‘PIGA deficiency’. While the phenotypic spectrum is wide, it could be classified into two types (severe and less severe) with shared hallmarks of infantile spasms with hypsarrhythmia on EEG and profound XLIDD. In severe PIGA deficiency, as described in our patient, patients also present with dysmorphic facial features, multiple CNS abnormalities, such as thin corpus callosum and delayed myelination, as well as hypotonia and elevated alkaline phosphatase along with liver, renal, and cardiac involvement; its course is often fatal. The less severe form of PIGA deficiency does not involve facial dysmorphism and multiple CNS abnormalities; instead, patients present with milder IDD, treatable seizures and generally a longer lifespan.
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spelling pubmed-43483722015-03-05 The genotypic and phenotypic spectrum of PIGA deficiency Tarailo-Graovac, Maja Sinclair, Graham Stockler-Ipsiroglu, Sylvia Van Allen, Margot Rozmus, Jacob Shyr, Casper Biancheri, Roberta Oh, Tracey Sayson, Bryan Lafek, Mirafe Ross, Colin J Robinson, Wendy P Wasserman, Wyeth W Rossi, Andrea van Karnebeek, Clara DM Orphanet J Rare Dis Research BACKGROUND: Phosphatidylinositol glycan biosynthesis class A protein (PIGA) is one of the enzymes involved in the biosynthesis of glycosylphosphatidylinositol (GPI) anchor proteins, which function as enzymes, adhesion molecules, complement regulators and co-receptors in signal transduction pathways. Until recently, only somatic PIGA mutations had been reported in patients with paroxysmal nocturnal hemoglobinuria (PNH), while germline mutations had not been observed, and were suspected to result in lethality. However, in just two years, whole exome sequencing (WES) analyses have identified germline PIGA mutations in male patients with XLIDD (X-linked intellectual developmental disorder) with a wide spectrum of clinical presentations. METHODS AND RESULTS: Here, we report on a new missense PIGA germline mutation [g.15342986C>T (p.S330N)] identified via WES followed by Sanger sequencing, in a Chinese male infant presenting with developmental arrest, infantile spasms, a pattern of lesion distribution on brain MRI resembling that typical of maple syrup urine disease, contractures, dysmorphism, elevated alkaline phosphatase, mixed hearing loss (a combination of conductive and sensorineural), liver dysfunction, mitochondrial complex I and V deficiency, and therapy-responsive dyslipidemia with confirmed lipoprotein lipase deficiency. X-inactivation studies showed skewing in the clinically unaffected carrier mother, and CD109 surface expression in patient fibroblasts was 57% of that measured in controls; together these data support pathogenicity of this mutation. Furthermore, we review all reported germline PIGA mutations (1 nonsense, 1 frameshift, 1 in-frame deletion, five missense) in 8 unrelated families. CONCLUSIONS: Our case further delineates the heterogeneous phenotype of this condition for which we propose the term ‘PIGA deficiency’. While the phenotypic spectrum is wide, it could be classified into two types (severe and less severe) with shared hallmarks of infantile spasms with hypsarrhythmia on EEG and profound XLIDD. In severe PIGA deficiency, as described in our patient, patients also present with dysmorphic facial features, multiple CNS abnormalities, such as thin corpus callosum and delayed myelination, as well as hypotonia and elevated alkaline phosphatase along with liver, renal, and cardiac involvement; its course is often fatal. The less severe form of PIGA deficiency does not involve facial dysmorphism and multiple CNS abnormalities; instead, patients present with milder IDD, treatable seizures and generally a longer lifespan. BioMed Central 2015-02-27 /pmc/articles/PMC4348372/ /pubmed/25885527 http://dx.doi.org/10.1186/s13023-015-0243-8 Text en © Tarailo-Graovac et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Tarailo-Graovac, Maja
Sinclair, Graham
Stockler-Ipsiroglu, Sylvia
Van Allen, Margot
Rozmus, Jacob
Shyr, Casper
Biancheri, Roberta
Oh, Tracey
Sayson, Bryan
Lafek, Mirafe
Ross, Colin J
Robinson, Wendy P
Wasserman, Wyeth W
Rossi, Andrea
van Karnebeek, Clara DM
The genotypic and phenotypic spectrum of PIGA deficiency
title The genotypic and phenotypic spectrum of PIGA deficiency
title_full The genotypic and phenotypic spectrum of PIGA deficiency
title_fullStr The genotypic and phenotypic spectrum of PIGA deficiency
title_full_unstemmed The genotypic and phenotypic spectrum of PIGA deficiency
title_short The genotypic and phenotypic spectrum of PIGA deficiency
title_sort genotypic and phenotypic spectrum of piga deficiency
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348372/
https://www.ncbi.nlm.nih.gov/pubmed/25885527
http://dx.doi.org/10.1186/s13023-015-0243-8
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