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GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report

Sturge-Weber syndrome (SWS) is a rare neurocutaneous disorder whose etiology remains unclear. To investigate the genetic contribution underlying this disease, the genetic variants of a 4-generation family with a history of SWS was analyzed in the present study. SWS was diagnosed in 3 of the family m...

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Autores principales: Huang, Zhengyi, Li, Yuchi, Zhao, Zengxia, Hu, Jun, Tong, Xiaoxin, Chen, Xuhui, Liu, Shuyun, Xu, Xiaonan, Tao, Yongjun, Wang, Tingting, Cheng, Xin, Dai, Yangyang, Gui, Yaoting, Wu, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5403265/
https://www.ncbi.nlm.nih.gov/pubmed/28454448
http://dx.doi.org/10.3892/ol.2017.5791
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author Huang, Zhengyi
Li, Yuchi
Zhao, Zengxia
Hu, Jun
Tong, Xiaoxin
Chen, Xuhui
Liu, Shuyun
Xu, Xiaonan
Tao, Yongjun
Wang, Tingting
Cheng, Xin
Dai, Yangyang
Gui, Yaoting
Wu, Jun
author_facet Huang, Zhengyi
Li, Yuchi
Zhao, Zengxia
Hu, Jun
Tong, Xiaoxin
Chen, Xuhui
Liu, Shuyun
Xu, Xiaonan
Tao, Yongjun
Wang, Tingting
Cheng, Xin
Dai, Yangyang
Gui, Yaoting
Wu, Jun
author_sort Huang, Zhengyi
collection PubMed
description Sturge-Weber syndrome (SWS) is a rare neurocutaneous disorder whose etiology remains unclear. To investigate the genetic contribution underlying this disease, the genetic variants of a 4-generation family with a history of SWS was analyzed in the present study. SWS was diagnosed in 3 of the family members (II-1, III-11 and IV-6). Sanger sequencing was performed to identify mutations in G protein subunit αq (GNAQ) and RAS p21 protein activator 1 exons in the 3 patients with SWS and other unaffected family members. Notably, a non-synonymous single-nucleotide variant at codon 183 on exon 4 of the GNAQ gene was identified as the only pathogenic site. This variant generated a substitution of arginine (R) with glutamine and resulted in a change of function of the encoded protein. Evolutionary conservation analysis revealed that the mutated residue 183 (R) of GNAQ is highly conserved across several vertebrate species. Furthermore, an immunofluorescence staining assay demonstrated that the substitution of arginine with glutamine resulted in a change in the sub-cellular localization of the GNAQ recombinant protein in vitro. These findings may aid in the development of novel diagnostic markers and/or therapeutic targets for the treatment of patients with familial SWS.
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spelling pubmed-54032652017-04-27 GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report Huang, Zhengyi Li, Yuchi Zhao, Zengxia Hu, Jun Tong, Xiaoxin Chen, Xuhui Liu, Shuyun Xu, Xiaonan Tao, Yongjun Wang, Tingting Cheng, Xin Dai, Yangyang Gui, Yaoting Wu, Jun Oncol Lett Articles Sturge-Weber syndrome (SWS) is a rare neurocutaneous disorder whose etiology remains unclear. To investigate the genetic contribution underlying this disease, the genetic variants of a 4-generation family with a history of SWS was analyzed in the present study. SWS was diagnosed in 3 of the family members (II-1, III-11 and IV-6). Sanger sequencing was performed to identify mutations in G protein subunit αq (GNAQ) and RAS p21 protein activator 1 exons in the 3 patients with SWS and other unaffected family members. Notably, a non-synonymous single-nucleotide variant at codon 183 on exon 4 of the GNAQ gene was identified as the only pathogenic site. This variant generated a substitution of arginine (R) with glutamine and resulted in a change of function of the encoded protein. Evolutionary conservation analysis revealed that the mutated residue 183 (R) of GNAQ is highly conserved across several vertebrate species. Furthermore, an immunofluorescence staining assay demonstrated that the substitution of arginine with glutamine resulted in a change in the sub-cellular localization of the GNAQ recombinant protein in vitro. These findings may aid in the development of novel diagnostic markers and/or therapeutic targets for the treatment of patients with familial SWS. D.A. Spandidos 2017-04 2017-03-01 /pmc/articles/PMC5403265/ /pubmed/28454448 http://dx.doi.org/10.3892/ol.2017.5791 Text en Copyright: © Huang et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Huang, Zhengyi
Li, Yuchi
Zhao, Zengxia
Hu, Jun
Tong, Xiaoxin
Chen, Xuhui
Liu, Shuyun
Xu, Xiaonan
Tao, Yongjun
Wang, Tingting
Cheng, Xin
Dai, Yangyang
Gui, Yaoting
Wu, Jun
GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title_full GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title_fullStr GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title_full_unstemmed GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title_short GNAQ mutation R183Q as a potential cause of familial Sturge-Weber syndrome: A case report
title_sort gnaq mutation r183q as a potential cause of familial sturge-weber syndrome: a case report
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5403265/
https://www.ncbi.nlm.nih.gov/pubmed/28454448
http://dx.doi.org/10.3892/ol.2017.5791
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