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Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis

BACKGROUND: The low-density lipoprotein receptor-related protein 6 (LRP6) gene is a recently defined gene that is associated with the autosomal-dominant inherited tooth agenesis (TA). In the present study, a family of four generations having TA was recruited and subjected to a series of clinical, ge...

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Autores principales: Huang, Yan-xia, Gao, Chun-yan, Zheng, Chun-yan, Chen, Xu, Yan, You-sheng, Sun, Yong-qing, Dong, Xing-yue, Yang, Kai, Zhang, Dong-liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8292820/
https://www.ncbi.nlm.nih.gov/pubmed/34306029
http://dx.doi.org/10.3389/fgene.2021.688241
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author Huang, Yan-xia
Gao, Chun-yan
Zheng, Chun-yan
Chen, Xu
Yan, You-sheng
Sun, Yong-qing
Dong, Xing-yue
Yang, Kai
Zhang, Dong-liang
author_facet Huang, Yan-xia
Gao, Chun-yan
Zheng, Chun-yan
Chen, Xu
Yan, You-sheng
Sun, Yong-qing
Dong, Xing-yue
Yang, Kai
Zhang, Dong-liang
author_sort Huang, Yan-xia
collection PubMed
description BACKGROUND: The low-density lipoprotein receptor-related protein 6 (LRP6) gene is a recently defined gene that is associated with the autosomal-dominant inherited tooth agenesis (TA). In the present study, a family of four generations having TA was recruited and subjected to a series of clinical, genetic, in silico, and in vitro investigations. METHODS: After routine clinical evaluation, the proband was subjected to whole-exome sequencing (WES) to detect the diagnostic variant. Next, in silico structural and molecular dynamics (MD) analysis was conducted on the identified novel missense variant for predicting its intramolecular impact. Subsequently, an in vitro study was performed to further explore the effect of this variant on protein maturation and phosphorylation. RESULTS: WES identified a novel variant, designated as LRP6: c.2570G > A (p.R857H), harbored by six members of the concerned family, four of whom exhibited varied TA symptoms. The in silico analysis suggested that this novel variant could probably damage the Wnt bonding function of the LRP6 protein. The experimental study demonstrated that although this novel variant did not affect the LRP6 gene transcription, it caused a impairment in the maturation and phosphorylation of LRP6 protein, suggesting the possibility of the disruption of the Wnt signaling. CONCLUSION: The present study expanded the mutation spectrum of human TA in the LRP6 gene. The findings of the present study are insightful and conducive to understanding the functional significance of specific LRP6 variants.
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spelling pubmed-82928202021-07-22 Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis Huang, Yan-xia Gao, Chun-yan Zheng, Chun-yan Chen, Xu Yan, You-sheng Sun, Yong-qing Dong, Xing-yue Yang, Kai Zhang, Dong-liang Front Genet Genetics BACKGROUND: The low-density lipoprotein receptor-related protein 6 (LRP6) gene is a recently defined gene that is associated with the autosomal-dominant inherited tooth agenesis (TA). In the present study, a family of four generations having TA was recruited and subjected to a series of clinical, genetic, in silico, and in vitro investigations. METHODS: After routine clinical evaluation, the proband was subjected to whole-exome sequencing (WES) to detect the diagnostic variant. Next, in silico structural and molecular dynamics (MD) analysis was conducted on the identified novel missense variant for predicting its intramolecular impact. Subsequently, an in vitro study was performed to further explore the effect of this variant on protein maturation and phosphorylation. RESULTS: WES identified a novel variant, designated as LRP6: c.2570G > A (p.R857H), harbored by six members of the concerned family, four of whom exhibited varied TA symptoms. The in silico analysis suggested that this novel variant could probably damage the Wnt bonding function of the LRP6 protein. The experimental study demonstrated that although this novel variant did not affect the LRP6 gene transcription, it caused a impairment in the maturation and phosphorylation of LRP6 protein, suggesting the possibility of the disruption of the Wnt signaling. CONCLUSION: The present study expanded the mutation spectrum of human TA in the LRP6 gene. The findings of the present study are insightful and conducive to understanding the functional significance of specific LRP6 variants. Frontiers Media S.A. 2021-07-07 /pmc/articles/PMC8292820/ /pubmed/34306029 http://dx.doi.org/10.3389/fgene.2021.688241 Text en Copyright © 2021 Huang, Gao, Zheng, Chen, Yan, Sun, Dong, Yang and Zhang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Huang, Yan-xia
Gao, Chun-yan
Zheng, Chun-yan
Chen, Xu
Yan, You-sheng
Sun, Yong-qing
Dong, Xing-yue
Yang, Kai
Zhang, Dong-liang
Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title_full Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title_fullStr Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title_full_unstemmed Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title_short Investigation of a Novel LRP6 Variant Causing Autosomal-Dominant Tooth Agenesis
title_sort investigation of a novel lrp6 variant causing autosomal-dominant tooth agenesis
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8292820/
https://www.ncbi.nlm.nih.gov/pubmed/34306029
http://dx.doi.org/10.3389/fgene.2021.688241
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