Cargando…

Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model

The SAM and SH3 domain-containing 1 (SASH1) genes have been identified as the causal genes of dyschromatosis universalis hereditaria (DUH); these genes cause the pathological phenotypes of DUH, and SASH1 variants have been shown to regulate the abnormal pigmentation phenotype in human skin in variou...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Zexi, Li, Yadong, Wang, Dahong, Wu, Daoqiu, Wang, Jinyun, Chen, Lian, Deng, Yinqian, Zhang, Jing, Wu, Zhixiong, Wan, Xin, Liu, Qianfan, Huang, Hai, Hu, Pingsheng, Zeng, Jiawei, Zhou, Ding'an
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387086/
https://www.ncbi.nlm.nih.gov/pubmed/32582980
http://dx.doi.org/10.3892/ijmm.2020.4652
_version_ 1783564073336569856
author Xu, Zexi
Li, Yadong
Wang, Dahong
Wu, Daoqiu
Wang, Jinyun
Chen, Lian
Deng, Yinqian
Zhang, Jing
Wu, Zhixiong
Wan, Xin
Liu, Qianfan
Huang, Hai
Hu, Pingsheng
Zeng, Jiawei
Zhou, Ding'an
author_facet Xu, Zexi
Li, Yadong
Wang, Dahong
Wu, Daoqiu
Wang, Jinyun
Chen, Lian
Deng, Yinqian
Zhang, Jing
Wu, Zhixiong
Wan, Xin
Liu, Qianfan
Huang, Hai
Hu, Pingsheng
Zeng, Jiawei
Zhou, Ding'an
author_sort Xu, Zexi
collection PubMed
description The SAM and SH3 domain-containing 1 (SASH1) genes have been identified as the causal genes of dyschromatosis universalis hereditaria (DUH); these genes cause the pathological phenotypes of DUH, and SASH1 variants have been shown to regulate the abnormal pigmentation phenotype in human skin in various genodermatoses. However, investigations into the mutated SASH1 gene have been limited to in vitro studies. In the present study, to recapitulate the molecular pathological phenotypes of individuals with DUH induced by SASH1 mutations, a heterozygous BALB/c mouse model, in which the human SASH1 c.1654 T>G (p. Tyr 551Asp, Y551D) mutation was knocked in was first generated. The in vivo functional experiments on Y551D SASH1 indicated that the increased expression of microphthalmia-associated transcription factor (Mitf) was uniformly induced in the tails of heterozygous BALB/c mice, and an increased quantity of Mitf-positive epithelial cells was also detected. An increased expression of Mitf- and Mitf-positive cells was also demonstrated in the epithelial tissues of Y551D-SASH1 affected individuals. In the present study, Mitf expression was also found to be increased by Y551D SASH1 in vitro. Taken together, these findings indicate that the upregulation of Mitf is the bona fide effector of the Y551D SASH1-mediated melanogenesis signaling pathway in vivo. SASH1 may function as a scaffold molecule for the assembly of a SASH1-Mitf molecular complex to regulate Mitf expression in the cell nucleus and thus to promote the hyperpigmented phenotype in the pathogenesis of DUH and other genodermatoses related to pigment abnormalities.
format Online
Article
Text
id pubmed-7387086
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher D.A. Spandidos
record_format MEDLINE/PubMed
spelling pubmed-73870862020-08-05 Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model Xu, Zexi Li, Yadong Wang, Dahong Wu, Daoqiu Wang, Jinyun Chen, Lian Deng, Yinqian Zhang, Jing Wu, Zhixiong Wan, Xin Liu, Qianfan Huang, Hai Hu, Pingsheng Zeng, Jiawei Zhou, Ding'an Int J Mol Med Articles The SAM and SH3 domain-containing 1 (SASH1) genes have been identified as the causal genes of dyschromatosis universalis hereditaria (DUH); these genes cause the pathological phenotypes of DUH, and SASH1 variants have been shown to regulate the abnormal pigmentation phenotype in human skin in various genodermatoses. However, investigations into the mutated SASH1 gene have been limited to in vitro studies. In the present study, to recapitulate the molecular pathological phenotypes of individuals with DUH induced by SASH1 mutations, a heterozygous BALB/c mouse model, in which the human SASH1 c.1654 T>G (p. Tyr 551Asp, Y551D) mutation was knocked in was first generated. The in vivo functional experiments on Y551D SASH1 indicated that the increased expression of microphthalmia-associated transcription factor (Mitf) was uniformly induced in the tails of heterozygous BALB/c mice, and an increased quantity of Mitf-positive epithelial cells was also detected. An increased expression of Mitf- and Mitf-positive cells was also demonstrated in the epithelial tissues of Y551D-SASH1 affected individuals. In the present study, Mitf expression was also found to be increased by Y551D SASH1 in vitro. Taken together, these findings indicate that the upregulation of Mitf is the bona fide effector of the Y551D SASH1-mediated melanogenesis signaling pathway in vivo. SASH1 may function as a scaffold molecule for the assembly of a SASH1-Mitf molecular complex to regulate Mitf expression in the cell nucleus and thus to promote the hyperpigmented phenotype in the pathogenesis of DUH and other genodermatoses related to pigment abnormalities. D.A. Spandidos 2020-09 2020-06-19 /pmc/articles/PMC7387086/ /pubmed/32582980 http://dx.doi.org/10.3892/ijmm.2020.4652 Text en Copyright: © Xu 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
Xu, Zexi
Li, Yadong
Wang, Dahong
Wu, Daoqiu
Wang, Jinyun
Chen, Lian
Deng, Yinqian
Zhang, Jing
Wu, Zhixiong
Wan, Xin
Liu, Qianfan
Huang, Hai
Hu, Pingsheng
Zeng, Jiawei
Zhou, Ding'an
Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title_full Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title_fullStr Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title_full_unstemmed Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title_short Mutated SASH1 promotes Mitf expression in a heterozygous mutated SASH1 knock-in mouse model
title_sort mutated sash1 promotes mitf expression in a heterozygous mutated sash1 knock-in mouse model
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387086/
https://www.ncbi.nlm.nih.gov/pubmed/32582980
http://dx.doi.org/10.3892/ijmm.2020.4652
work_keys_str_mv AT xuzexi mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT liyadong mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT wangdahong mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT wudaoqiu mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT wangjinyun mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT chenlian mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT dengyinqian mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT zhangjing mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT wuzhixiong mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT wanxin mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT liuqianfan mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT huanghai mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT hupingsheng mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT zengjiawei mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel
AT zhoudingan mutatedsash1promotesmitfexpressioninaheterozygousmutatedsash1knockinmousemodel