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Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function

Next‐generation sequencing (NGS) has been instrumental in solving the genetic basis of rare inherited diseases, especially neurodevelopmental syndromes. However, functional workup is essential for precise phenotype definition and to understand the underlying disease mechanisms. Using whole exome (WE...

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Autores principales: Rehman, Atteeq U., Najafi, Maryam, Kambouris, Marios, Al‐Gazali, Lihadh, Makrythanasis, Periklis, Rad, Abolfazl, Maroofian, Reza, Rajab, Anna, Stark, Zornitza, Hunter, Jill V., Bakey, Zeineb, Tokita, Mari J., He, Weimin, Vetrini, Francesco, Petersen, Andrea, Santoni, Federico A., Hamamy, Hanan, Wu, Kaman, Al‐Jasmi, Fatma, Helmstädter, Martin, Arnold, Sebastian J., Xia, Fan, Richmond, Christopher, Liu, Pengfei, Karimiani, Ehsan Ghayoor, Karami Madani, GholamReza, Lunke, Sebastian, El‐Shanti, Hatem, Eng, Christine M., Antonarakis, Stylianos E., Hertecant, Jozef, Walkiewicz, Magdalena, Yang, Yaping, Schmidts, Miriam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6370506/
https://www.ncbi.nlm.nih.gov/pubmed/30520571
http://dx.doi.org/10.1002/humu.23694
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author Rehman, Atteeq U.
Najafi, Maryam
Kambouris, Marios
Al‐Gazali, Lihadh
Makrythanasis, Periklis
Rad, Abolfazl
Maroofian, Reza
Rajab, Anna
Stark, Zornitza
Hunter, Jill V.
Bakey, Zeineb
Tokita, Mari J.
He, Weimin
Vetrini, Francesco
Petersen, Andrea
Santoni, Federico A.
Hamamy, Hanan
Wu, Kaman
Al‐Jasmi, Fatma
Helmstädter, Martin
Arnold, Sebastian J.
Xia, Fan
Richmond, Christopher
Liu, Pengfei
Karimiani, Ehsan Ghayoor
Karami Madani, GholamReza
Lunke, Sebastian
El‐Shanti, Hatem
Eng, Christine M.
Antonarakis, Stylianos E.
Hertecant, Jozef
Walkiewicz, Magdalena
Yang, Yaping
Schmidts, Miriam
author_facet Rehman, Atteeq U.
Najafi, Maryam
Kambouris, Marios
Al‐Gazali, Lihadh
Makrythanasis, Periklis
Rad, Abolfazl
Maroofian, Reza
Rajab, Anna
Stark, Zornitza
Hunter, Jill V.
Bakey, Zeineb
Tokita, Mari J.
He, Weimin
Vetrini, Francesco
Petersen, Andrea
Santoni, Federico A.
Hamamy, Hanan
Wu, Kaman
Al‐Jasmi, Fatma
Helmstädter, Martin
Arnold, Sebastian J.
Xia, Fan
Richmond, Christopher
Liu, Pengfei
Karimiani, Ehsan Ghayoor
Karami Madani, GholamReza
Lunke, Sebastian
El‐Shanti, Hatem
Eng, Christine M.
Antonarakis, Stylianos E.
Hertecant, Jozef
Walkiewicz, Magdalena
Yang, Yaping
Schmidts, Miriam
author_sort Rehman, Atteeq U.
collection PubMed
description Next‐generation sequencing (NGS) has been instrumental in solving the genetic basis of rare inherited diseases, especially neurodevelopmental syndromes. However, functional workup is essential for precise phenotype definition and to understand the underlying disease mechanisms. Using whole exome (WES) and whole genome sequencing (WGS) in four independent families with hypotonia, neurodevelopmental delay, facial dysmorphism, loss of white matter, and thinning of the corpus callosum, we identified four previously unreported homozygous truncating PPP1R21 alleles: c.347delT p.(Ile116Lysfs*25), c.2170_2171insGGTA p.(Ile724Argfs*8), c.1607dupT p.(Leu536Phefs*7), c.2063delA p.(Lys688Serfs*26) and found that PPP1R21 was absent in fibroblasts of an affected individual, supporting the allele's loss of function effect. PPP1R21 function had not been studied except that a large scale affinity proteomics approach suggested an interaction with PIBF1 defective in Joubert syndrome. Our co‐immunoprecipitation studies did not confirm this but in contrast defined the localization of PPP1R21 to the early endosome. Consistent with the subcellular expression pattern and the clinical phenotype exhibiting features of storage diseases, we found patient fibroblasts exhibited a delay in clearance of transferrin‐488 while uptake was normal. In summary, we delineate a novel neurodevelopmental syndrome caused by biallelic PPP1R21 loss of function variants, and suggest a role of PPP1R21 within the endosomal sorting process or endosome maturation pathway.
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spelling pubmed-63705062019-06-17 Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function Rehman, Atteeq U. Najafi, Maryam Kambouris, Marios Al‐Gazali, Lihadh Makrythanasis, Periklis Rad, Abolfazl Maroofian, Reza Rajab, Anna Stark, Zornitza Hunter, Jill V. Bakey, Zeineb Tokita, Mari J. He, Weimin Vetrini, Francesco Petersen, Andrea Santoni, Federico A. Hamamy, Hanan Wu, Kaman Al‐Jasmi, Fatma Helmstädter, Martin Arnold, Sebastian J. Xia, Fan Richmond, Christopher Liu, Pengfei Karimiani, Ehsan Ghayoor Karami Madani, GholamReza Lunke, Sebastian El‐Shanti, Hatem Eng, Christine M. Antonarakis, Stylianos E. Hertecant, Jozef Walkiewicz, Magdalena Yang, Yaping Schmidts, Miriam Hum Mutat Rapid Communications Next‐generation sequencing (NGS) has been instrumental in solving the genetic basis of rare inherited diseases, especially neurodevelopmental syndromes. However, functional workup is essential for precise phenotype definition and to understand the underlying disease mechanisms. Using whole exome (WES) and whole genome sequencing (WGS) in four independent families with hypotonia, neurodevelopmental delay, facial dysmorphism, loss of white matter, and thinning of the corpus callosum, we identified four previously unreported homozygous truncating PPP1R21 alleles: c.347delT p.(Ile116Lysfs*25), c.2170_2171insGGTA p.(Ile724Argfs*8), c.1607dupT p.(Leu536Phefs*7), c.2063delA p.(Lys688Serfs*26) and found that PPP1R21 was absent in fibroblasts of an affected individual, supporting the allele's loss of function effect. PPP1R21 function had not been studied except that a large scale affinity proteomics approach suggested an interaction with PIBF1 defective in Joubert syndrome. Our co‐immunoprecipitation studies did not confirm this but in contrast defined the localization of PPP1R21 to the early endosome. Consistent with the subcellular expression pattern and the clinical phenotype exhibiting features of storage diseases, we found patient fibroblasts exhibited a delay in clearance of transferrin‐488 while uptake was normal. In summary, we delineate a novel neurodevelopmental syndrome caused by biallelic PPP1R21 loss of function variants, and suggest a role of PPP1R21 within the endosomal sorting process or endosome maturation pathway. John Wiley and Sons Inc. 2018-12-25 2019-03 /pmc/articles/PMC6370506/ /pubmed/30520571 http://dx.doi.org/10.1002/humu.23694 Text en © 2018 The Authors. Human Mutation published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Rapid Communications
Rehman, Atteeq U.
Najafi, Maryam
Kambouris, Marios
Al‐Gazali, Lihadh
Makrythanasis, Periklis
Rad, Abolfazl
Maroofian, Reza
Rajab, Anna
Stark, Zornitza
Hunter, Jill V.
Bakey, Zeineb
Tokita, Mari J.
He, Weimin
Vetrini, Francesco
Petersen, Andrea
Santoni, Federico A.
Hamamy, Hanan
Wu, Kaman
Al‐Jasmi, Fatma
Helmstädter, Martin
Arnold, Sebastian J.
Xia, Fan
Richmond, Christopher
Liu, Pengfei
Karimiani, Ehsan Ghayoor
Karami Madani, GholamReza
Lunke, Sebastian
El‐Shanti, Hatem
Eng, Christine M.
Antonarakis, Stylianos E.
Hertecant, Jozef
Walkiewicz, Magdalena
Yang, Yaping
Schmidts, Miriam
Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title_full Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title_fullStr Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title_full_unstemmed Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title_short Biallelic loss of function variants in PPP1R21 cause a neurodevelopmental syndrome with impaired endocytic function
title_sort biallelic loss of function variants in ppp1r21 cause a neurodevelopmental syndrome with impaired endocytic function
topic Rapid Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6370506/
https://www.ncbi.nlm.nih.gov/pubmed/30520571
http://dx.doi.org/10.1002/humu.23694
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