Cargando…

The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation

Activation of NF-κB-dependent transcription represents an important hallmark of inflammation. While the acute inflammatory response is per se beneficial, it can become deleterious if its spatial and temporal profile is not tightly controlled. Classically, NF-κB activity is limited by cytoplasmic ret...

Descripción completa

Detalles Bibliográficos
Autores principales: Hochrainer, Karin, Pejanovic, Nadja, Olaseun, Victoria A., Zhang, Sheng, Iadecola, Costantino, Anrather, Josef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4787756/
https://www.ncbi.nlm.nih.gov/pubmed/26476452
http://dx.doi.org/10.1093/nar/gkv1064
_version_ 1782420680624570368
author Hochrainer, Karin
Pejanovic, Nadja
Olaseun, Victoria A.
Zhang, Sheng
Iadecola, Costantino
Anrather, Josef
author_facet Hochrainer, Karin
Pejanovic, Nadja
Olaseun, Victoria A.
Zhang, Sheng
Iadecola, Costantino
Anrather, Josef
author_sort Hochrainer, Karin
collection PubMed
description Activation of NF-κB-dependent transcription represents an important hallmark of inflammation. While the acute inflammatory response is per se beneficial, it can become deleterious if its spatial and temporal profile is not tightly controlled. Classically, NF-κB activity is limited by cytoplasmic retention of the NF-κB dimer through binding to inhibitory IκB proteins. However, increasing evidence suggests that NF-κB activity can also be efficiently contained by direct ubiquitination of NF-κB subunits. Here, we identify the HECT-domain ubiquitin ligase HERC3 as novel negative regulator of NF-κB activity. We find that HERC3 restricts NF-κB nuclear import and DNA binding without affecting IκBα degradation. Instead HERC3 indirectly binds to the NF-κB RelA subunit after liberation from IκBα inhibitor leading to its ubiquitination and protein destabilization. Remarkably, the regulation of RelA activity by HERC3 is independent of its inherent ubiquitin ligase activity. Rather, we show that HERC3 and RelA are part of a multi-protein complex containing the proteasome as well as the ubiquitin-like protein ubiquilin-1 (UBQLN1). We present evidence that HERC3 and UBQLN1 provide a link between NF-κB RelA and the 26S proteasome, thereby facilitating RelA protein degradation. Our findings establish HERC3 as novel candidate regulating the inflammatory response initiated by NF-κB.
format Online
Article
Text
id pubmed-4787756
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-47877562016-03-14 The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation Hochrainer, Karin Pejanovic, Nadja Olaseun, Victoria A. Zhang, Sheng Iadecola, Costantino Anrather, Josef Nucleic Acids Res Molecular Biology Activation of NF-κB-dependent transcription represents an important hallmark of inflammation. While the acute inflammatory response is per se beneficial, it can become deleterious if its spatial and temporal profile is not tightly controlled. Classically, NF-κB activity is limited by cytoplasmic retention of the NF-κB dimer through binding to inhibitory IκB proteins. However, increasing evidence suggests that NF-κB activity can also be efficiently contained by direct ubiquitination of NF-κB subunits. Here, we identify the HECT-domain ubiquitin ligase HERC3 as novel negative regulator of NF-κB activity. We find that HERC3 restricts NF-κB nuclear import and DNA binding without affecting IκBα degradation. Instead HERC3 indirectly binds to the NF-κB RelA subunit after liberation from IκBα inhibitor leading to its ubiquitination and protein destabilization. Remarkably, the regulation of RelA activity by HERC3 is independent of its inherent ubiquitin ligase activity. Rather, we show that HERC3 and RelA are part of a multi-protein complex containing the proteasome as well as the ubiquitin-like protein ubiquilin-1 (UBQLN1). We present evidence that HERC3 and UBQLN1 provide a link between NF-κB RelA and the 26S proteasome, thereby facilitating RelA protein degradation. Our findings establish HERC3 as novel candidate regulating the inflammatory response initiated by NF-κB. Oxford University Press 2015-11-16 2015-10-17 /pmc/articles/PMC4787756/ /pubmed/26476452 http://dx.doi.org/10.1093/nar/gkv1064 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Molecular Biology
Hochrainer, Karin
Pejanovic, Nadja
Olaseun, Victoria A.
Zhang, Sheng
Iadecola, Costantino
Anrather, Josef
The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title_full The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title_fullStr The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title_full_unstemmed The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title_short The ubiquitin ligase HERC3 attenuates NF-κB-dependent transcription independently of its enzymatic activity by delivering the RelA subunit for degradation
title_sort ubiquitin ligase herc3 attenuates nf-κb-dependent transcription independently of its enzymatic activity by delivering the rela subunit for degradation
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4787756/
https://www.ncbi.nlm.nih.gov/pubmed/26476452
http://dx.doi.org/10.1093/nar/gkv1064
work_keys_str_mv AT hochrainerkarin theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT pejanovicnadja theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT olaseunvictoriaa theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT zhangsheng theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT iadecolacostantino theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT anratherjosef theubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT hochrainerkarin ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT pejanovicnadja ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT olaseunvictoriaa ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT zhangsheng ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT iadecolacostantino ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation
AT anratherjosef ubiquitinligaseherc3attenuatesnfkbdependenttranscriptionindependentlyofitsenzymaticactivitybydeliveringtherelasubunitfordegradation