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A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism

Congenital hypothyroidism (CH) is the most prevalent congenital endocrine disorder and causes mental retardation. A male Japanese patient with first cousin marriage parents was diagnosed as CH at 10 months. He was born before introduction of mass screening for CH. With continuous thyroid hormone rep...

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Autores principales: Yakou, Fumiyoshi, Suwanai, Hirotsugu, Ishikawa, Takuya, Itou, Mariko, Shikuma, Jumpei, Miwa, Takashi, Sakai, Hiroyuki, Kanekura, Kohsuke, Narumi, Satoshi, Suzuki, Ryo, Odawara, Masato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477596/
https://www.ncbi.nlm.nih.gov/pubmed/32908504
http://dx.doi.org/10.1155/2020/9132372
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author Yakou, Fumiyoshi
Suwanai, Hirotsugu
Ishikawa, Takuya
Itou, Mariko
Shikuma, Jumpei
Miwa, Takashi
Sakai, Hiroyuki
Kanekura, Kohsuke
Narumi, Satoshi
Suzuki, Ryo
Odawara, Masato
author_facet Yakou, Fumiyoshi
Suwanai, Hirotsugu
Ishikawa, Takuya
Itou, Mariko
Shikuma, Jumpei
Miwa, Takashi
Sakai, Hiroyuki
Kanekura, Kohsuke
Narumi, Satoshi
Suzuki, Ryo
Odawara, Masato
author_sort Yakou, Fumiyoshi
collection PubMed
description Congenital hypothyroidism (CH) is the most prevalent congenital endocrine disorder and causes mental retardation. A male Japanese patient with first cousin marriage parents was diagnosed as CH at 10 months. He was born before introduction of mass screening for CH. With continuous thyroid hormone replacement therapy, normal thyroid hormone status was maintained until adulthood. Genetic screening of next-generation sequencing was performed at the age of 52 years, and we identified a new homozygous thyroid peroxidase (TPO) gene mutation (GRCh38.p13, chromosome 2 at position 1493997, c.1964 G>T, p.Cys655Phe). TPO is an important enzyme to produce thyroid hormone. As demonstrated by a homology analysis of TPO proteins among different species, cysteine 655 residue is highly conserved, suggesting an important role in maintaining TPO function and structure. An in silico study with three-dimensional structure of the novel mutation was performed and suggested that the mutation abolished disulfide bond between cysteines at positions 598 and 655. An in vitro functional analysis using HEK293 cells revealed that TPO activity of the mutant was significantly impaired compared with that of the wild type. Furthermore, study of immunohistochemistry showed that localization of TPO in cells did not differ between the wild type and the mutant. In conclusion, this single disulfide bond loss mutation of a new TPO homozygous mutation, p.Cys655Phe, reduced TPO activity and caused congenital hypothyroidism without affecting subcellular localization of TPO proteins.
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spelling pubmed-74775962020-09-08 A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism Yakou, Fumiyoshi Suwanai, Hirotsugu Ishikawa, Takuya Itou, Mariko Shikuma, Jumpei Miwa, Takashi Sakai, Hiroyuki Kanekura, Kohsuke Narumi, Satoshi Suzuki, Ryo Odawara, Masato Int J Endocrinol Research Article Congenital hypothyroidism (CH) is the most prevalent congenital endocrine disorder and causes mental retardation. A male Japanese patient with first cousin marriage parents was diagnosed as CH at 10 months. He was born before introduction of mass screening for CH. With continuous thyroid hormone replacement therapy, normal thyroid hormone status was maintained until adulthood. Genetic screening of next-generation sequencing was performed at the age of 52 years, and we identified a new homozygous thyroid peroxidase (TPO) gene mutation (GRCh38.p13, chromosome 2 at position 1493997, c.1964 G>T, p.Cys655Phe). TPO is an important enzyme to produce thyroid hormone. As demonstrated by a homology analysis of TPO proteins among different species, cysteine 655 residue is highly conserved, suggesting an important role in maintaining TPO function and structure. An in silico study with three-dimensional structure of the novel mutation was performed and suggested that the mutation abolished disulfide bond between cysteines at positions 598 and 655. An in vitro functional analysis using HEK293 cells revealed that TPO activity of the mutant was significantly impaired compared with that of the wild type. Furthermore, study of immunohistochemistry showed that localization of TPO in cells did not differ between the wild type and the mutant. In conclusion, this single disulfide bond loss mutation of a new TPO homozygous mutation, p.Cys655Phe, reduced TPO activity and caused congenital hypothyroidism without affecting subcellular localization of TPO proteins. Hindawi 2020-08-30 /pmc/articles/PMC7477596/ /pubmed/32908504 http://dx.doi.org/10.1155/2020/9132372 Text en Copyright © 2020 Fumiyoshi Yakou et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yakou, Fumiyoshi
Suwanai, Hirotsugu
Ishikawa, Takuya
Itou, Mariko
Shikuma, Jumpei
Miwa, Takashi
Sakai, Hiroyuki
Kanekura, Kohsuke
Narumi, Satoshi
Suzuki, Ryo
Odawara, Masato
A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title_full A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title_fullStr A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title_full_unstemmed A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title_short A Novel Homozygous Mutation of Thyroid Peroxidase Gene Abolishes a Disulfide Bond Leading to Congenital Hypothyroidism
title_sort novel homozygous mutation of thyroid peroxidase gene abolishes a disulfide bond leading to congenital hypothyroidism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477596/
https://www.ncbi.nlm.nih.gov/pubmed/32908504
http://dx.doi.org/10.1155/2020/9132372
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