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Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice

Skin lesions, cataracts, and congenital anomalies have been frequently associated with inherited deficiencies in enzymes that synthesize cholesterol. Lanosterol synthase (LSS) converts (S)-2,3-epoxysqualene to lanosterol in the cholesterol biosynthesis pathway. Biallelic mutations in LSS have been r...

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Autores principales: Wada, Yoichi, Kikuchi, Atsuo, Kaga, Akimune, Shimizu, Naoki, Ito, Junya, Onuma, Ryo, Fujishima, Fumiyoshi, Totsune, Eriko, Sato, Ryo, Niihori, Tetsuya, Shirota, Matsuyuki, Funayama, Ryo, Sato, Kota, Nakazawa, Toru, Nakayama, Keiko, Aoki, Yoko, Aiba, Setsuya, Nakagawa, Kiyotaka, Kure, Shigeo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7062289/
https://www.ncbi.nlm.nih.gov/pubmed/32101538
http://dx.doi.org/10.1371/journal.pgen.1008628
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author Wada, Yoichi
Kikuchi, Atsuo
Kaga, Akimune
Shimizu, Naoki
Ito, Junya
Onuma, Ryo
Fujishima, Fumiyoshi
Totsune, Eriko
Sato, Ryo
Niihori, Tetsuya
Shirota, Matsuyuki
Funayama, Ryo
Sato, Kota
Nakazawa, Toru
Nakayama, Keiko
Aoki, Yoko
Aiba, Setsuya
Nakagawa, Kiyotaka
Kure, Shigeo
author_facet Wada, Yoichi
Kikuchi, Atsuo
Kaga, Akimune
Shimizu, Naoki
Ito, Junya
Onuma, Ryo
Fujishima, Fumiyoshi
Totsune, Eriko
Sato, Ryo
Niihori, Tetsuya
Shirota, Matsuyuki
Funayama, Ryo
Sato, Kota
Nakazawa, Toru
Nakayama, Keiko
Aoki, Yoko
Aiba, Setsuya
Nakagawa, Kiyotaka
Kure, Shigeo
author_sort Wada, Yoichi
collection PubMed
description Skin lesions, cataracts, and congenital anomalies have been frequently associated with inherited deficiencies in enzymes that synthesize cholesterol. Lanosterol synthase (LSS) converts (S)-2,3-epoxysqualene to lanosterol in the cholesterol biosynthesis pathway. Biallelic mutations in LSS have been reported in families with congenital cataracts and, very recently, have been reported in cases of hypotrichosis. However, it remains to be clarified whether these phenotypes are caused by LSS enzymatic deficiencies in each tissue, and disruption of LSS enzymatic activity in vivo has not yet been validated. We identified two patients with novel biallelic LSS mutations who exhibited congenital hypotrichosis and midline anomalies but did not have cataracts. We showed that the blockade of the LSS enzyme reaction occurred in the patients by measuring the (S)-2,3-epoxysqualene/lanosterol ratio in the forehead sebum, which would be a good biomarker for the diagnosis of LSS deficiency. Epidermis-specific Lss knockout mice showed neonatal lethality due to dehydration, indicating that LSS could be involved in skin barrier integrity. Tamoxifen-induced knockout of Lss in the epidermis caused hypotrichosis in adult mice. Lens-specific Lss knockout mice had cataracts. These results confirmed that LSS deficiency causes hypotrichosis and cataracts due to loss-of-function mutations in LSS in each tissue. These mouse models will lead to the elucidation of the pathophysiological mechanisms associated with disrupted LSS and to the development of therapeutic treatments for LSS deficiency.
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spelling pubmed-70622892020-03-23 Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice Wada, Yoichi Kikuchi, Atsuo Kaga, Akimune Shimizu, Naoki Ito, Junya Onuma, Ryo Fujishima, Fumiyoshi Totsune, Eriko Sato, Ryo Niihori, Tetsuya Shirota, Matsuyuki Funayama, Ryo Sato, Kota Nakazawa, Toru Nakayama, Keiko Aoki, Yoko Aiba, Setsuya Nakagawa, Kiyotaka Kure, Shigeo PLoS Genet Research Article Skin lesions, cataracts, and congenital anomalies have been frequently associated with inherited deficiencies in enzymes that synthesize cholesterol. Lanosterol synthase (LSS) converts (S)-2,3-epoxysqualene to lanosterol in the cholesterol biosynthesis pathway. Biallelic mutations in LSS have been reported in families with congenital cataracts and, very recently, have been reported in cases of hypotrichosis. However, it remains to be clarified whether these phenotypes are caused by LSS enzymatic deficiencies in each tissue, and disruption of LSS enzymatic activity in vivo has not yet been validated. We identified two patients with novel biallelic LSS mutations who exhibited congenital hypotrichosis and midline anomalies but did not have cataracts. We showed that the blockade of the LSS enzyme reaction occurred in the patients by measuring the (S)-2,3-epoxysqualene/lanosterol ratio in the forehead sebum, which would be a good biomarker for the diagnosis of LSS deficiency. Epidermis-specific Lss knockout mice showed neonatal lethality due to dehydration, indicating that LSS could be involved in skin barrier integrity. Tamoxifen-induced knockout of Lss in the epidermis caused hypotrichosis in adult mice. Lens-specific Lss knockout mice had cataracts. These results confirmed that LSS deficiency causes hypotrichosis and cataracts due to loss-of-function mutations in LSS in each tissue. These mouse models will lead to the elucidation of the pathophysiological mechanisms associated with disrupted LSS and to the development of therapeutic treatments for LSS deficiency. Public Library of Science 2020-02-26 /pmc/articles/PMC7062289/ /pubmed/32101538 http://dx.doi.org/10.1371/journal.pgen.1008628 Text en © 2020 Wada et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wada, Yoichi
Kikuchi, Atsuo
Kaga, Akimune
Shimizu, Naoki
Ito, Junya
Onuma, Ryo
Fujishima, Fumiyoshi
Totsune, Eriko
Sato, Ryo
Niihori, Tetsuya
Shirota, Matsuyuki
Funayama, Ryo
Sato, Kota
Nakazawa, Toru
Nakayama, Keiko
Aoki, Yoko
Aiba, Setsuya
Nakagawa, Kiyotaka
Kure, Shigeo
Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title_full Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title_fullStr Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title_full_unstemmed Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title_short Metabolic and pathologic profiles of human LSS deficiency recapitulated in mice
title_sort metabolic and pathologic profiles of human lss deficiency recapitulated in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7062289/
https://www.ncbi.nlm.nih.gov/pubmed/32101538
http://dx.doi.org/10.1371/journal.pgen.1008628
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