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S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome

In this report, we discovered a new entity named cataract, alopecia, oral mucosal disorder, and psoriasis‐like (CAOP) syndrome in two unrelated and ethnically diverse patients. Furthermore, patient 1 failed to respond to regular treatment. We found that CAOP syndrome was caused by an autosomal reces...

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Autores principales: Chen, Fuying, Ni, Cheng, Wang, Xiaoxiao, Cheng, Ruhong, Pan, Chaolan, Wang, Yumeng, Liang, Jianying, Zhang, Jia, Cheng, Jinke, Chin, Y Eugene, Zhou, Yi, Wang, Zhen, Guo, Yiran, Chen, She, Htun, Stephanie, Mathes, Erin F, de Alba Campomanes, Alejandra G, Slavotinek, Anne M, Zhang, Si, Li, Ming, Yao, Zhirong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081911/
https://www.ncbi.nlm.nih.gov/pubmed/35362222
http://dx.doi.org/10.15252/emmm.202114904
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author Chen, Fuying
Ni, Cheng
Wang, Xiaoxiao
Cheng, Ruhong
Pan, Chaolan
Wang, Yumeng
Liang, Jianying
Zhang, Jia
Cheng, Jinke
Chin, Y Eugene
Zhou, Yi
Wang, Zhen
Guo, Yiran
Chen, She
Htun, Stephanie
Mathes, Erin F
de Alba Campomanes, Alejandra G
Slavotinek, Anne M
Zhang, Si
Li, Ming
Yao, Zhirong
author_facet Chen, Fuying
Ni, Cheng
Wang, Xiaoxiao
Cheng, Ruhong
Pan, Chaolan
Wang, Yumeng
Liang, Jianying
Zhang, Jia
Cheng, Jinke
Chin, Y Eugene
Zhou, Yi
Wang, Zhen
Guo, Yiran
Chen, She
Htun, Stephanie
Mathes, Erin F
de Alba Campomanes, Alejandra G
Slavotinek, Anne M
Zhang, Si
Li, Ming
Yao, Zhirong
author_sort Chen, Fuying
collection PubMed
description In this report, we discovered a new entity named cataract, alopecia, oral mucosal disorder, and psoriasis‐like (CAOP) syndrome in two unrelated and ethnically diverse patients. Furthermore, patient 1 failed to respond to regular treatment. We found that CAOP syndrome was caused by an autosomal recessive defect in the mitochondrial membrane‐bound transcription factor peptidase/site‐1 protease (MBTPS1, S1P). Mitochondrial abnormalities were observed in patient 1 with CAOP syndrome. Furthermore, we found that S1P is a novel mitochondrial protein that forms a trimeric complex with ETFA/ETFB. S1P enhances ETFA/ETFB flavination and maintains its stability. Patient S1P variants destabilize ETFA/ETFB, impair mitochondrial respiration, decrease fatty acid β‐oxidation activity, and shift mitochondrial oxidative phosphorylation (OXPHOS) to glycolysis. Mitochondrial dysfunction and inflammatory lesions in patient 1 were significantly ameliorated by riboflavin supplementation, which restored the stability of ETFA/ETFB. Our study discovered that mutations in MBTPS1 resulted in a new entity of CAOP syndrome and elucidated the mechanism of the mutations in the new disease.
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spelling pubmed-90819112022-05-13 S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome Chen, Fuying Ni, Cheng Wang, Xiaoxiao Cheng, Ruhong Pan, Chaolan Wang, Yumeng Liang, Jianying Zhang, Jia Cheng, Jinke Chin, Y Eugene Zhou, Yi Wang, Zhen Guo, Yiran Chen, She Htun, Stephanie Mathes, Erin F de Alba Campomanes, Alejandra G Slavotinek, Anne M Zhang, Si Li, Ming Yao, Zhirong EMBO Mol Med Articles In this report, we discovered a new entity named cataract, alopecia, oral mucosal disorder, and psoriasis‐like (CAOP) syndrome in two unrelated and ethnically diverse patients. Furthermore, patient 1 failed to respond to regular treatment. We found that CAOP syndrome was caused by an autosomal recessive defect in the mitochondrial membrane‐bound transcription factor peptidase/site‐1 protease (MBTPS1, S1P). Mitochondrial abnormalities were observed in patient 1 with CAOP syndrome. Furthermore, we found that S1P is a novel mitochondrial protein that forms a trimeric complex with ETFA/ETFB. S1P enhances ETFA/ETFB flavination and maintains its stability. Patient S1P variants destabilize ETFA/ETFB, impair mitochondrial respiration, decrease fatty acid β‐oxidation activity, and shift mitochondrial oxidative phosphorylation (OXPHOS) to glycolysis. Mitochondrial dysfunction and inflammatory lesions in patient 1 were significantly ameliorated by riboflavin supplementation, which restored the stability of ETFA/ETFB. Our study discovered that mutations in MBTPS1 resulted in a new entity of CAOP syndrome and elucidated the mechanism of the mutations in the new disease. John Wiley and Sons Inc. 2022-04-01 /pmc/articles/PMC9081911/ /pubmed/35362222 http://dx.doi.org/10.15252/emmm.202114904 Text en © 2022 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Chen, Fuying
Ni, Cheng
Wang, Xiaoxiao
Cheng, Ruhong
Pan, Chaolan
Wang, Yumeng
Liang, Jianying
Zhang, Jia
Cheng, Jinke
Chin, Y Eugene
Zhou, Yi
Wang, Zhen
Guo, Yiran
Chen, She
Htun, Stephanie
Mathes, Erin F
de Alba Campomanes, Alejandra G
Slavotinek, Anne M
Zhang, Si
Li, Ming
Yao, Zhirong
S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title_full S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title_fullStr S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title_full_unstemmed S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title_short S1P defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
title_sort s1p defects cause a new entity of cataract, alopecia, oral mucosal disorder, and psoriasis‐like syndrome
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081911/
https://www.ncbi.nlm.nih.gov/pubmed/35362222
http://dx.doi.org/10.15252/emmm.202114904
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