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CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication

The INO80 chromatin remodeling complex has roles in many essential cellular processes, including DNA replication. However, the mechanisms that regulate INO80 in these processes remain largely unknown. We previously reported that the stability of Ino80, the catalytic ATPase subunit of INO80, is regul...

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Autores principales: Seo, Hye-Ran, Jeong, Daun, Lee, Sunmi, Lee, Han-Sae, Lee, Shin-Ai, Kang, Sang Won, Kwon, Jongbum
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Molecular and Cellular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7941006/
https://www.ncbi.nlm.nih.gov/pubmed/33658435
http://dx.doi.org/10.14348/molcells.2021.2258
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author Seo, Hye-Ran
Jeong, Daun
Lee, Sunmi
Lee, Han-Sae
Lee, Shin-Ai
Kang, Sang Won
Kwon, Jongbum
author_facet Seo, Hye-Ran
Jeong, Daun
Lee, Sunmi
Lee, Han-Sae
Lee, Shin-Ai
Kang, Sang Won
Kwon, Jongbum
author_sort Seo, Hye-Ran
collection PubMed
description The INO80 chromatin remodeling complex has roles in many essential cellular processes, including DNA replication. However, the mechanisms that regulate INO80 in these processes remain largely unknown. We previously reported that the stability of Ino80, the catalytic ATPase subunit of INO80, is regulated by the ubiquitin proteasome system and that BRCA1-associated protein-1 (BAP1), a nuclear deubiquitinase with tumor suppressor activity, stabilizes Ino80 via deubiquitination and promotes replication fork progression. However, the E3 ubiquitin ligase that targets Ino80 for proteasomal degradation was unknown. Here, we identified the C-terminus of Hsp70-interacting protein (CHIP), the E3 ubiquitin ligase that functions in cooperation with Hsp70, as an Ino80-interacting protein. CHIP polyubiquitinates Ino80 in a manner dependent on Hsp70. Contrary to our expectation that CHIP degrades Ino80, CHIP instead stabilizes Ino80 by extending its half-life. The data suggest that CHIP stabilizes Ino80 by inhibiting degradative ubiquitination. We also show that CHIP works together with BAP1 to enhance the stabilization of Ino80, leading to its chromatin binding. Interestingly, both depletion and overexpression of CHIP compromise replication fork progression with little effect on fork stalling, as similarly observed for BAP1 and Ino80, indicating that an optimal cellular level of Ino80 is important for replication fork speed but not for replication stress suppression. This work therefore idenitifes CHIP as an E3 ubiquitin ligase that stabilizes Ino80 via nondegradative ubiquitination and suggests that CHIP and BAP1 act in concert to regulate Ino80 ubiquitination to fine-tune its stability for efficient DNA replication.
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spelling pubmed-79410062021-03-16 CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication Seo, Hye-Ran Jeong, Daun Lee, Sunmi Lee, Han-Sae Lee, Shin-Ai Kang, Sang Won Kwon, Jongbum Mol Cells Research Article The INO80 chromatin remodeling complex has roles in many essential cellular processes, including DNA replication. However, the mechanisms that regulate INO80 in these processes remain largely unknown. We previously reported that the stability of Ino80, the catalytic ATPase subunit of INO80, is regulated by the ubiquitin proteasome system and that BRCA1-associated protein-1 (BAP1), a nuclear deubiquitinase with tumor suppressor activity, stabilizes Ino80 via deubiquitination and promotes replication fork progression. However, the E3 ubiquitin ligase that targets Ino80 for proteasomal degradation was unknown. Here, we identified the C-terminus of Hsp70-interacting protein (CHIP), the E3 ubiquitin ligase that functions in cooperation with Hsp70, as an Ino80-interacting protein. CHIP polyubiquitinates Ino80 in a manner dependent on Hsp70. Contrary to our expectation that CHIP degrades Ino80, CHIP instead stabilizes Ino80 by extending its half-life. The data suggest that CHIP stabilizes Ino80 by inhibiting degradative ubiquitination. We also show that CHIP works together with BAP1 to enhance the stabilization of Ino80, leading to its chromatin binding. Interestingly, both depletion and overexpression of CHIP compromise replication fork progression with little effect on fork stalling, as similarly observed for BAP1 and Ino80, indicating that an optimal cellular level of Ino80 is important for replication fork speed but not for replication stress suppression. This work therefore idenitifes CHIP as an E3 ubiquitin ligase that stabilizes Ino80 via nondegradative ubiquitination and suggests that CHIP and BAP1 act in concert to regulate Ino80 ubiquitination to fine-tune its stability for efficient DNA replication. Korean Society for Molecular and Cellular Biology 2021-02-28 2021-02-25 /pmc/articles/PMC7941006/ /pubmed/33658435 http://dx.doi.org/10.14348/molcells.2021.2258 Text en © The Korean Society for Molecular and Cellular Biology. All rights reserved. This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Research Article
Seo, Hye-Ran
Jeong, Daun
Lee, Sunmi
Lee, Han-Sae
Lee, Shin-Ai
Kang, Sang Won
Kwon, Jongbum
CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title_full CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title_fullStr CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title_full_unstemmed CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title_short CHIP and BAP1 Act in Concert to Regulate INO80 Ubiquitination and Stability for DNA Replication
title_sort chip and bap1 act in concert to regulate ino80 ubiquitination and stability for dna replication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7941006/
https://www.ncbi.nlm.nih.gov/pubmed/33658435
http://dx.doi.org/10.14348/molcells.2021.2258
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