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Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β

Mutations in human CLC-1 chloride channel are associated with the skeletal muscle disorder myotonia congenita. The disease-causing mutant A531V manifests enhanced proteasomal degradation of CLC-1. We recently found that CLC-1 degradation is mediated by cullin 4 ubiquitin ligase complex. It is curren...

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Autores principales: Peng, Yi-Jheng, Huang, Jing-Jia, Wu, Hao-Han, Hsieh, Hsin-Ying, Wu, Chia-Ying, Chen, Shu-Ching, Chen, Tsung-Yu, Tang, Chih-Yung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5007535/
https://www.ncbi.nlm.nih.gov/pubmed/27580824
http://dx.doi.org/10.1038/srep32444
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author Peng, Yi-Jheng
Huang, Jing-Jia
Wu, Hao-Han
Hsieh, Hsin-Ying
Wu, Chia-Ying
Chen, Shu-Ching
Chen, Tsung-Yu
Tang, Chih-Yung
author_facet Peng, Yi-Jheng
Huang, Jing-Jia
Wu, Hao-Han
Hsieh, Hsin-Ying
Wu, Chia-Ying
Chen, Shu-Ching
Chen, Tsung-Yu
Tang, Chih-Yung
author_sort Peng, Yi-Jheng
collection PubMed
description Mutations in human CLC-1 chloride channel are associated with the skeletal muscle disorder myotonia congenita. The disease-causing mutant A531V manifests enhanced proteasomal degradation of CLC-1. We recently found that CLC-1 degradation is mediated by cullin 4 ubiquitin ligase complex. It is currently unclear how quality control and protein degradation systems coordinate with each other to process the biosynthesis of CLC-1. Herein we aim to ascertain the molecular nature of the protein quality control system for CLC-1. We identified three CLC-1-interacting proteins that are well-known heat shock protein 90 (Hsp90)-associated co-chaperones: FK506-binding protein 8 (FKBP8), activator of Hsp90 ATPase homolog 1 (Aha1), and Hsp70/Hsp90 organizing protein (HOP). These co-chaperones promote both the protein level and the functional expression of CLC-1 wild-type and A531V mutant. CLC-1 biosynthesis is also facilitated by the molecular chaperones Hsc70 and Hsp90β. The protein stability of CLC-1 is notably increased by FKBP8 and the Hsp90β inhibitor 17-allylamino-17-demethoxygeldanamycin (17-AAG) that substantially suppresses cullin 4 expression. We further confirmed that cullin 4 may interact with Hsp90β and FKBP8. Our data are consistent with the idea that FKBP8 and Hsp90β play an essential role in the late phase of CLC-1 quality control by dynamically coordinating protein folding and degradation.
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spelling pubmed-50075352016-09-08 Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β Peng, Yi-Jheng Huang, Jing-Jia Wu, Hao-Han Hsieh, Hsin-Ying Wu, Chia-Ying Chen, Shu-Ching Chen, Tsung-Yu Tang, Chih-Yung Sci Rep Article Mutations in human CLC-1 chloride channel are associated with the skeletal muscle disorder myotonia congenita. The disease-causing mutant A531V manifests enhanced proteasomal degradation of CLC-1. We recently found that CLC-1 degradation is mediated by cullin 4 ubiquitin ligase complex. It is currently unclear how quality control and protein degradation systems coordinate with each other to process the biosynthesis of CLC-1. Herein we aim to ascertain the molecular nature of the protein quality control system for CLC-1. We identified three CLC-1-interacting proteins that are well-known heat shock protein 90 (Hsp90)-associated co-chaperones: FK506-binding protein 8 (FKBP8), activator of Hsp90 ATPase homolog 1 (Aha1), and Hsp70/Hsp90 organizing protein (HOP). These co-chaperones promote both the protein level and the functional expression of CLC-1 wild-type and A531V mutant. CLC-1 biosynthesis is also facilitated by the molecular chaperones Hsc70 and Hsp90β. The protein stability of CLC-1 is notably increased by FKBP8 and the Hsp90β inhibitor 17-allylamino-17-demethoxygeldanamycin (17-AAG) that substantially suppresses cullin 4 expression. We further confirmed that cullin 4 may interact with Hsp90β and FKBP8. Our data are consistent with the idea that FKBP8 and Hsp90β play an essential role in the late phase of CLC-1 quality control by dynamically coordinating protein folding and degradation. Nature Publishing Group 2016-09-01 /pmc/articles/PMC5007535/ /pubmed/27580824 http://dx.doi.org/10.1038/srep32444 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Peng, Yi-Jheng
Huang, Jing-Jia
Wu, Hao-Han
Hsieh, Hsin-Ying
Wu, Chia-Ying
Chen, Shu-Ching
Chen, Tsung-Yu
Tang, Chih-Yung
Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title_full Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title_fullStr Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title_full_unstemmed Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title_short Regulation of CLC-1 chloride channel biosynthesis by FKBP8 and Hsp90β
title_sort regulation of clc-1 chloride channel biosynthesis by fkbp8 and hsp90β
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5007535/
https://www.ncbi.nlm.nih.gov/pubmed/27580824
http://dx.doi.org/10.1038/srep32444
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