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Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations

Mutation in the gene encoding microphthalmia-associated transcription factor (MITF) lead to Waardenburg syndrome 2 (WS2), an autosomal dominantly inherited syndrome with auditory-pigmentary abnormalities, which is clinically and genetically heterogeneous. Haploinsufficiency may be the underlying mec...

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Autores principales: Wang, Xue-Ping, Liu, Ya-Lan, Mei, Ling-Yun, He, Chu-Feng, Niu, Zhi-Jie, Sun, Jie, Zhao, Yu-lin, Feng, Yong, Zhang, Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5915419/
https://www.ncbi.nlm.nih.gov/pubmed/29531335
http://dx.doi.org/10.1038/s10038-018-0425-z
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author Wang, Xue-Ping
Liu, Ya-Lan
Mei, Ling-Yun
He, Chu-Feng
Niu, Zhi-Jie
Sun, Jie
Zhao, Yu-lin
Feng, Yong
Zhang, Hua
author_facet Wang, Xue-Ping
Liu, Ya-Lan
Mei, Ling-Yun
He, Chu-Feng
Niu, Zhi-Jie
Sun, Jie
Zhao, Yu-lin
Feng, Yong
Zhang, Hua
author_sort Wang, Xue-Ping
collection PubMed
description Mutation in the gene encoding microphthalmia-associated transcription factor (MITF) lead to Waardenburg syndrome 2 (WS2), an autosomal dominantly inherited syndrome with auditory-pigmentary abnormalities, which is clinically and genetically heterogeneous. Haploinsufficiency may be the underlying mechanism for WS2. However, the mechanisms explaining the genotypic and phenotypic variations in WS2 caused by MITF mutations are unclear. A previous study revealed that MITF interacts with LEF-1, an important factor in the Wnt signaling pathway, to regulate its own transcription through LEF-1-binding sites on the MITF promoter. In this study, four different WS2-associated MITF mutations (p.R217I, p.R217G, p.R255X, p.R217del) that are associated with highly variable clinical features were chosen. According to the results, LEF-1 can activate the expression of MITF on its own, but MITF proteins inhibited the activation. This inhibition weakens when the dosage of MITF is reduced. Except for p.R217I, p.R255X, p.R217G, and p.R217del lose the ability to activate TYR completely and do not inhibit the LEF-1-mediated activation of the MITF-M promoter, and the haploinsufficiency created by mutant MITF can be overcome; correspondingly, the mutants’ associated phenotypes are less severe than that of p.R217I. The dominant negative of p.R217del made it have a second-most severe phenotype. This study’s data imply that MITF has a negative feedback loop of regulation to stabilize MITF gene dosage that involves the Wnt signaling pathway and that the interaction of MITF mutants with this pathway drives the genotypic and phenotypic differences observed in Waardenburg syndrome type 2 associated with MITF mutations.
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spelling pubmed-59154192018-04-27 Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations Wang, Xue-Ping Liu, Ya-Lan Mei, Ling-Yun He, Chu-Feng Niu, Zhi-Jie Sun, Jie Zhao, Yu-lin Feng, Yong Zhang, Hua J Hum Genet Article Mutation in the gene encoding microphthalmia-associated transcription factor (MITF) lead to Waardenburg syndrome 2 (WS2), an autosomal dominantly inherited syndrome with auditory-pigmentary abnormalities, which is clinically and genetically heterogeneous. Haploinsufficiency may be the underlying mechanism for WS2. However, the mechanisms explaining the genotypic and phenotypic variations in WS2 caused by MITF mutations are unclear. A previous study revealed that MITF interacts with LEF-1, an important factor in the Wnt signaling pathway, to regulate its own transcription through LEF-1-binding sites on the MITF promoter. In this study, four different WS2-associated MITF mutations (p.R217I, p.R217G, p.R255X, p.R217del) that are associated with highly variable clinical features were chosen. According to the results, LEF-1 can activate the expression of MITF on its own, but MITF proteins inhibited the activation. This inhibition weakens when the dosage of MITF is reduced. Except for p.R217I, p.R255X, p.R217G, and p.R217del lose the ability to activate TYR completely and do not inhibit the LEF-1-mediated activation of the MITF-M promoter, and the haploinsufficiency created by mutant MITF can be overcome; correspondingly, the mutants’ associated phenotypes are less severe than that of p.R217I. The dominant negative of p.R217del made it have a second-most severe phenotype. This study’s data imply that MITF has a negative feedback loop of regulation to stabilize MITF gene dosage that involves the Wnt signaling pathway and that the interaction of MITF mutants with this pathway drives the genotypic and phenotypic differences observed in Waardenburg syndrome type 2 associated with MITF mutations. Nature Publishing Group UK 2018-03-12 2018 /pmc/articles/PMC5915419/ /pubmed/29531335 http://dx.doi.org/10.1038/s10038-018-0425-z Text en © The Author(s) under exclusive licence to The Japan Society of Human Genetics 2018
spellingShingle Article
Wang, Xue-Ping
Liu, Ya-Lan
Mei, Ling-Yun
He, Chu-Feng
Niu, Zhi-Jie
Sun, Jie
Zhao, Yu-lin
Feng, Yong
Zhang, Hua
Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title_full Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title_fullStr Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title_full_unstemmed Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title_short Wnt signaling pathway involvement in genotypic and phenotypic variations in Waardenburg syndrome type 2 with MITF mutations
title_sort wnt signaling pathway involvement in genotypic and phenotypic variations in waardenburg syndrome type 2 with mitf mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5915419/
https://www.ncbi.nlm.nih.gov/pubmed/29531335
http://dx.doi.org/10.1038/s10038-018-0425-z
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