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Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome

HPMRS or Mabry syndrome is a heterogeneous glycosylphosphatidylinositol (GPI) anchor deficiency that is caused by an impairment of synthesis or maturation of the GPI‐anchor. The expressivity of the clinical features in HPMRS varies from severe syndromic forms with multiple organ malformations to mil...

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Autores principales: Knaus, Alexej, Awaya, Tomonari, Helbig, Ingo, Afawi, Zaid, Pendziwiat, Manuela, Abu‐Rachma, Jubran, Thompson, Miles D., Cole, David E., Skinner, Steve, Annese, Fran, Canham, Natalie, Schweiger, Michal R., Robinson, Peter N., Mundlos, Stefan, Kinoshita, Taroh, Munnich, Arnold, Murakami, Yoshiko, Horn, Denise, Krawitz, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5084765/
https://www.ncbi.nlm.nih.gov/pubmed/27120253
http://dx.doi.org/10.1002/humu.23006
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author Knaus, Alexej
Awaya, Tomonari
Helbig, Ingo
Afawi, Zaid
Pendziwiat, Manuela
Abu‐Rachma, Jubran
Thompson, Miles D.
Cole, David E.
Skinner, Steve
Annese, Fran
Canham, Natalie
Schweiger, Michal R.
Robinson, Peter N.
Mundlos, Stefan
Kinoshita, Taroh
Munnich, Arnold
Murakami, Yoshiko
Horn, Denise
Krawitz, Peter M.
author_facet Knaus, Alexej
Awaya, Tomonari
Helbig, Ingo
Afawi, Zaid
Pendziwiat, Manuela
Abu‐Rachma, Jubran
Thompson, Miles D.
Cole, David E.
Skinner, Steve
Annese, Fran
Canham, Natalie
Schweiger, Michal R.
Robinson, Peter N.
Mundlos, Stefan
Kinoshita, Taroh
Munnich, Arnold
Murakami, Yoshiko
Horn, Denise
Krawitz, Peter M.
author_sort Knaus, Alexej
collection PubMed
description HPMRS or Mabry syndrome is a heterogeneous glycosylphosphatidylinositol (GPI) anchor deficiency that is caused by an impairment of synthesis or maturation of the GPI‐anchor. The expressivity of the clinical features in HPMRS varies from severe syndromic forms with multiple organ malformations to mild nonsyndromic intellectual disability. In about half of the patients with the clinical diagnosis of HPMRS, pathogenic mutations can be identified in the coding region in one of the six genes, one among them is PGAP3. In this work, we describe a screening approach with sequence specific baits for transcripts of genes of the GPI pathway that allows the detection of functionally relevant mutations also including introns and the 5′ and 3′ UTR. By this means, we also identified pathogenic noncoding mutations, which increases the diagnostic yield for HPMRS on the basis of intellectual disability and elevated serum alkaline phosphatase. In eight affected individuals from different ethnicities, we found seven novel pathogenic mutations in PGAP3. Besides five missense mutations, we identified an intronic mutation, c.558‐10G>A, that causes an aberrant splice product and a mutation in the 3′UTR, c.*559C>T, that is associated with substantially lower mRNA levels. We show that our novel screening approach is a useful rapid detection tool for alterations in genes coding for key components of the GPI pathway.
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spelling pubmed-50847652016-11-09 Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome Knaus, Alexej Awaya, Tomonari Helbig, Ingo Afawi, Zaid Pendziwiat, Manuela Abu‐Rachma, Jubran Thompson, Miles D. Cole, David E. Skinner, Steve Annese, Fran Canham, Natalie Schweiger, Michal R. Robinson, Peter N. Mundlos, Stefan Kinoshita, Taroh Munnich, Arnold Murakami, Yoshiko Horn, Denise Krawitz, Peter M. Hum Mutat Research Articles HPMRS or Mabry syndrome is a heterogeneous glycosylphosphatidylinositol (GPI) anchor deficiency that is caused by an impairment of synthesis or maturation of the GPI‐anchor. The expressivity of the clinical features in HPMRS varies from severe syndromic forms with multiple organ malformations to mild nonsyndromic intellectual disability. In about half of the patients with the clinical diagnosis of HPMRS, pathogenic mutations can be identified in the coding region in one of the six genes, one among them is PGAP3. In this work, we describe a screening approach with sequence specific baits for transcripts of genes of the GPI pathway that allows the detection of functionally relevant mutations also including introns and the 5′ and 3′ UTR. By this means, we also identified pathogenic noncoding mutations, which increases the diagnostic yield for HPMRS on the basis of intellectual disability and elevated serum alkaline phosphatase. In eight affected individuals from different ethnicities, we found seven novel pathogenic mutations in PGAP3. Besides five missense mutations, we identified an intronic mutation, c.558‐10G>A, that causes an aberrant splice product and a mutation in the 3′UTR, c.*559C>T, that is associated with substantially lower mRNA levels. We show that our novel screening approach is a useful rapid detection tool for alterations in genes coding for key components of the GPI pathway. John Wiley and Sons Inc. 2016-05-19 2016-08 /pmc/articles/PMC5084765/ /pubmed/27120253 http://dx.doi.org/10.1002/humu.23006 Text en © 2016 The Authors. **Human Mutation published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Knaus, Alexej
Awaya, Tomonari
Helbig, Ingo
Afawi, Zaid
Pendziwiat, Manuela
Abu‐Rachma, Jubran
Thompson, Miles D.
Cole, David E.
Skinner, Steve
Annese, Fran
Canham, Natalie
Schweiger, Michal R.
Robinson, Peter N.
Mundlos, Stefan
Kinoshita, Taroh
Munnich, Arnold
Murakami, Yoshiko
Horn, Denise
Krawitz, Peter M.
Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title_full Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title_fullStr Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title_full_unstemmed Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title_short Rare Noncoding Mutations Extend the Mutational Spectrum in the PGAP3 Subtype of Hyperphosphatasia with Mental Retardation Syndrome
title_sort rare noncoding mutations extend the mutational spectrum in the pgap3 subtype of hyperphosphatasia with mental retardation syndrome
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5084765/
https://www.ncbi.nlm.nih.gov/pubmed/27120253
http://dx.doi.org/10.1002/humu.23006
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