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The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits

The transcription factor NF-ĸB is a master regulator of the innate immune response and plays a central role in inflammatory diseases by mediating the expression of pro-inflammatory cytokines. Ubiquitination-triggered proteasomal degradation of DNA-bound NF-ĸB strongly limits the expression of its ta...

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Autores principales: Mitxitorena, Izaskun, Somma, Domenico, Mitchell, Jennifer P., Lepistö, Matti, Tyrchan, Christian, Smith, Emma L., Kiely, Patrick A., Walden, Helen, Keeshan, Karen, Carmody, Ruaidhrí J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7450122/
https://www.ncbi.nlm.nih.gov/pubmed/32587091
http://dx.doi.org/10.1074/jbc.RA120.014113
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author Mitxitorena, Izaskun
Somma, Domenico
Mitchell, Jennifer P.
Lepistö, Matti
Tyrchan, Christian
Smith, Emma L.
Kiely, Patrick A.
Walden, Helen
Keeshan, Karen
Carmody, Ruaidhrí J.
author_facet Mitxitorena, Izaskun
Somma, Domenico
Mitchell, Jennifer P.
Lepistö, Matti
Tyrchan, Christian
Smith, Emma L.
Kiely, Patrick A.
Walden, Helen
Keeshan, Karen
Carmody, Ruaidhrí J.
author_sort Mitxitorena, Izaskun
collection PubMed
description The transcription factor NF-ĸB is a master regulator of the innate immune response and plays a central role in inflammatory diseases by mediating the expression of pro-inflammatory cytokines. Ubiquitination-triggered proteasomal degradation of DNA-bound NF-ĸB strongly limits the expression of its target genes. Conversely, USP7 (deubiquitinase ubiquitin-specific peptidase 7) opposes the activities of E3 ligases, stabilizes DNA-bound NF-ĸB, and thereby promotes NF-ĸB–mediated transcription. Using gene expression and synthetic peptide arrays on membrane support and overlay analyses, we found here that inhibiting USP7 increases NF-ĸB ubiquitination and degradation, prevents Toll-like receptor–induced pro-inflammatory cytokine expression, and represents an effective strategy for controlling inflammation. However, the broad regulatory roles of USP7 in cell death pathways, chromatin, and DNA damage responses limit the use of catalytic inhibitors of USP7 as anti-inflammatory agents. To this end, we identified an NF-ĸB–binding site in USP7, ubiquitin-like domain 2, that selectively mediates interactions of USP7 with NF-ĸB subunits but is dispensable for interactions with other proteins. Moreover, we found that the amino acids (757)LDEL(760) in USP7 critically contribute to the interaction with the p65 subunit of NF-ĸB. Our findings support the notion that USP7 activity could be potentially targeted in a substrate-selective manner through the development of noncatalytic inhibitors of this deubiquitinase to abrogate NF-ĸB activity.
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spelling pubmed-74501222020-09-02 The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits Mitxitorena, Izaskun Somma, Domenico Mitchell, Jennifer P. Lepistö, Matti Tyrchan, Christian Smith, Emma L. Kiely, Patrick A. Walden, Helen Keeshan, Karen Carmody, Ruaidhrí J. J Biol Chem Protein Synthesis and Degradation The transcription factor NF-ĸB is a master regulator of the innate immune response and plays a central role in inflammatory diseases by mediating the expression of pro-inflammatory cytokines. Ubiquitination-triggered proteasomal degradation of DNA-bound NF-ĸB strongly limits the expression of its target genes. Conversely, USP7 (deubiquitinase ubiquitin-specific peptidase 7) opposes the activities of E3 ligases, stabilizes DNA-bound NF-ĸB, and thereby promotes NF-ĸB–mediated transcription. Using gene expression and synthetic peptide arrays on membrane support and overlay analyses, we found here that inhibiting USP7 increases NF-ĸB ubiquitination and degradation, prevents Toll-like receptor–induced pro-inflammatory cytokine expression, and represents an effective strategy for controlling inflammation. However, the broad regulatory roles of USP7 in cell death pathways, chromatin, and DNA damage responses limit the use of catalytic inhibitors of USP7 as anti-inflammatory agents. To this end, we identified an NF-ĸB–binding site in USP7, ubiquitin-like domain 2, that selectively mediates interactions of USP7 with NF-ĸB subunits but is dispensable for interactions with other proteins. Moreover, we found that the amino acids (757)LDEL(760) in USP7 critically contribute to the interaction with the p65 subunit of NF-ĸB. Our findings support the notion that USP7 activity could be potentially targeted in a substrate-selective manner through the development of noncatalytic inhibitors of this deubiquitinase to abrogate NF-ĸB activity. American Society for Biochemistry and Molecular Biology 2020-08-14 2020-06-25 /pmc/articles/PMC7450122/ /pubmed/32587091 http://dx.doi.org/10.1074/jbc.RA120.014113 Text en © 2020 Mitxitorena et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Protein Synthesis and Degradation
Mitxitorena, Izaskun
Somma, Domenico
Mitchell, Jennifer P.
Lepistö, Matti
Tyrchan, Christian
Smith, Emma L.
Kiely, Patrick A.
Walden, Helen
Keeshan, Karen
Carmody, Ruaidhrí J.
The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title_full The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title_fullStr The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title_full_unstemmed The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title_short The deubiquitinase USP7 uses a distinct ubiquitin-like domain to deubiquitinate NF-ĸB subunits
title_sort deubiquitinase usp7 uses a distinct ubiquitin-like domain to deubiquitinate nf-ĸb subunits
topic Protein Synthesis and Degradation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7450122/
https://www.ncbi.nlm.nih.gov/pubmed/32587091
http://dx.doi.org/10.1074/jbc.RA120.014113
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