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A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome

Sturge–Weber syndrome (SWS) is a neurocutaneous disorder characterized by vascular malformations affecting skin, eyes and leptomeninges of the brain, which can lead to glaucoma, seizures and intellectual disability. The discovery of a disease-causing somatic missense mutation in the GNAQ gene, encod...

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Autores principales: Fjær, Roar, Marciniak, Katarzyna, Sundnes, Olav, Hjorthaug, Hanne, Sheng, Ying, Hammarström, Clara, Sitek, Jan Cezary, Vigeland, Magnus Dehli, Backe, Paul Hoff, Øye, Ane-Marte, Fosse, Johanna Hol, Stav-Noraas, Tor Espen, Uchiyama, Yuri, Matsumoto, Naomichi, Comi, Anne, Pevsner, Jonathan, Haraldsen, Guttorm, Selmer, Kaja Kristine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8522634/
https://www.ncbi.nlm.nih.gov/pubmed/34124757
http://dx.doi.org/10.1093/hmg/ddab144
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author Fjær, Roar
Marciniak, Katarzyna
Sundnes, Olav
Hjorthaug, Hanne
Sheng, Ying
Hammarström, Clara
Sitek, Jan Cezary
Vigeland, Magnus Dehli
Backe, Paul Hoff
Øye, Ane-Marte
Fosse, Johanna Hol
Stav-Noraas, Tor Espen
Uchiyama, Yuri
Matsumoto, Naomichi
Comi, Anne
Pevsner, Jonathan
Haraldsen, Guttorm
Selmer, Kaja Kristine
author_facet Fjær, Roar
Marciniak, Katarzyna
Sundnes, Olav
Hjorthaug, Hanne
Sheng, Ying
Hammarström, Clara
Sitek, Jan Cezary
Vigeland, Magnus Dehli
Backe, Paul Hoff
Øye, Ane-Marte
Fosse, Johanna Hol
Stav-Noraas, Tor Espen
Uchiyama, Yuri
Matsumoto, Naomichi
Comi, Anne
Pevsner, Jonathan
Haraldsen, Guttorm
Selmer, Kaja Kristine
author_sort Fjær, Roar
collection PubMed
description Sturge–Weber syndrome (SWS) is a neurocutaneous disorder characterized by vascular malformations affecting skin, eyes and leptomeninges of the brain, which can lead to glaucoma, seizures and intellectual disability. The discovery of a disease-causing somatic missense mutation in the GNAQ gene, encoding an alpha chain of heterotrimeric G-proteins, has initiated efforts to understand how G-proteins contribute to SWS pathogenesis. The mutation is predominantly detected in endothelial cells and is currently believed to affect downstream MAPK signalling. In this study of six Norwegian patients with classical SWS, we aimed to identify somatic mutations through deep sequencing of DNA from skin biopsies. Surprisingly, one patient was negative for the GNAQ mutation, but instead harbored a somatic mutation in GNB2 (NM_005273.3:c.232A>G, p.Lys78Glu), which encodes a beta chain of the same G-protein complex. The positions of the mutant amino acids in the G-protein are essential for complex reassembly. Therefore, failure of reassembly and continuous signalling is a likely consequence of both mutations. Ectopic expression of mutant proteins in endothelial cells revealed that expression of either mutant reduced cellular proliferation, yet regulated MAPK signalling differently, suggesting that dysregulated MAPK signalling cannot fully explain the SWS phenotype. Instead, both mutants reduced synthesis of Yes-associated protein (YAP), a transcriptional co-activator of the Hippo signalling pathway, suggesting a key role for this pathway in the vascular pathogenesis of SWS. The discovery of the GNB2 mutation sheds novel light on the pathogenesis of SWS and suggests that future research on targets of treatment should be directed towards the YAP, rather than the MAPK, signalling pathway.
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spelling pubmed-85226342021-10-19 A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome Fjær, Roar Marciniak, Katarzyna Sundnes, Olav Hjorthaug, Hanne Sheng, Ying Hammarström, Clara Sitek, Jan Cezary Vigeland, Magnus Dehli Backe, Paul Hoff Øye, Ane-Marte Fosse, Johanna Hol Stav-Noraas, Tor Espen Uchiyama, Yuri Matsumoto, Naomichi Comi, Anne Pevsner, Jonathan Haraldsen, Guttorm Selmer, Kaja Kristine Hum Mol Genet General Article Sturge–Weber syndrome (SWS) is a neurocutaneous disorder characterized by vascular malformations affecting skin, eyes and leptomeninges of the brain, which can lead to glaucoma, seizures and intellectual disability. The discovery of a disease-causing somatic missense mutation in the GNAQ gene, encoding an alpha chain of heterotrimeric G-proteins, has initiated efforts to understand how G-proteins contribute to SWS pathogenesis. The mutation is predominantly detected in endothelial cells and is currently believed to affect downstream MAPK signalling. In this study of six Norwegian patients with classical SWS, we aimed to identify somatic mutations through deep sequencing of DNA from skin biopsies. Surprisingly, one patient was negative for the GNAQ mutation, but instead harbored a somatic mutation in GNB2 (NM_005273.3:c.232A>G, p.Lys78Glu), which encodes a beta chain of the same G-protein complex. The positions of the mutant amino acids in the G-protein are essential for complex reassembly. Therefore, failure of reassembly and continuous signalling is a likely consequence of both mutations. Ectopic expression of mutant proteins in endothelial cells revealed that expression of either mutant reduced cellular proliferation, yet regulated MAPK signalling differently, suggesting that dysregulated MAPK signalling cannot fully explain the SWS phenotype. Instead, both mutants reduced synthesis of Yes-associated protein (YAP), a transcriptional co-activator of the Hippo signalling pathway, suggesting a key role for this pathway in the vascular pathogenesis of SWS. The discovery of the GNB2 mutation sheds novel light on the pathogenesis of SWS and suggests that future research on targets of treatment should be directed towards the YAP, rather than the MAPK, signalling pathway. Oxford University Press 2021-06-14 /pmc/articles/PMC8522634/ /pubmed/34124757 http://dx.doi.org/10.1093/hmg/ddab144 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle General Article
Fjær, Roar
Marciniak, Katarzyna
Sundnes, Olav
Hjorthaug, Hanne
Sheng, Ying
Hammarström, Clara
Sitek, Jan Cezary
Vigeland, Magnus Dehli
Backe, Paul Hoff
Øye, Ane-Marte
Fosse, Johanna Hol
Stav-Noraas, Tor Espen
Uchiyama, Yuri
Matsumoto, Naomichi
Comi, Anne
Pevsner, Jonathan
Haraldsen, Guttorm
Selmer, Kaja Kristine
A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title_full A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title_fullStr A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title_full_unstemmed A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title_short A novel somatic mutation in GNB2 provides new insights to the pathogenesis of Sturge–Weber syndrome
title_sort novel somatic mutation in gnb2 provides new insights to the pathogenesis of sturge–weber syndrome
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8522634/
https://www.ncbi.nlm.nih.gov/pubmed/34124757
http://dx.doi.org/10.1093/hmg/ddab144
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