Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity.
The NF-κB pathway is regulated by SUMOylation at least at three levels: the inhibitory molecule IκBα, the IKK subunit γ/NEMO and the p52 precursor p100. Here we investigate the role of SUMO-2/3 in the degradation of IκBα and activation of NF-κB mediated by TNFα. We found that under conditions of def...
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doaj-c7f8a61df1a0489780327ed1b931f63d2020-11-25T00:47:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01712e5167210.1371/journal.pone.0051672Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity.Fabienne AilletFernando Lopitz-OtsoaIsabel EgañaRoland HjerpePaul FraserRon T HayManuel S RodriguezValérie LangThe NF-κB pathway is regulated by SUMOylation at least at three levels: the inhibitory molecule IκBα, the IKK subunit γ/NEMO and the p52 precursor p100. Here we investigate the role of SUMO-2/3 in the degradation of IκBα and activation of NF-κB mediated by TNFα. We found that under conditions of deficient SUMOylation, an important delay in both TNFα-mediated proteolysis of IκBα and NF-κB dependent transcription occurs. In vitro and ex vivo approaches, including the use of ubiquitin-traps (TUBEs), revealed the formation of chains on IκBα containing SUMO-2/3 and ubiquitin after TNFα stimulation. The integration of SUMO-2/3 appears to promote the formation of ubiquitin chains on IκBα after activation of the TNFα signalling pathway. Furthermore, heterologous chains of SUMO-2/3 and ubiquitin promote a more efficient degradation of IκBα by the 26S proteasome in vitro compared to chains of either SUMO-2/3 or ubiquitin alone. Consistently, Ubc9 silencing reduced the capture of IκBα modified with SUMO-ubiquitin hybrid chains that display a defective proteasome-mediated degradation. Thus, hybrid SUMO-2/3-ubiquitin chains increase the susceptibility of modified IκBα to the action of 26S proteasome, contributing to the optimal control of NF-κB activity after TNFα-stimulation.http://europepmc.org/articles/PMC3527444?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fabienne Aillet Fernando Lopitz-Otsoa Isabel Egaña Roland Hjerpe Paul Fraser Ron T Hay Manuel S Rodriguez Valérie Lang |
spellingShingle |
Fabienne Aillet Fernando Lopitz-Otsoa Isabel Egaña Roland Hjerpe Paul Fraser Ron T Hay Manuel S Rodriguez Valérie Lang Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. PLoS ONE |
author_facet |
Fabienne Aillet Fernando Lopitz-Otsoa Isabel Egaña Roland Hjerpe Paul Fraser Ron T Hay Manuel S Rodriguez Valérie Lang |
author_sort |
Fabienne Aillet |
title |
Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. |
title_short |
Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. |
title_full |
Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. |
title_fullStr |
Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. |
title_full_unstemmed |
Heterologous SUMO-2/3-ubiquitin chains optimize IκBα degradation and NF-κB activity. |
title_sort |
heterologous sumo-2/3-ubiquitin chains optimize iκbα degradation and nf-κb activity. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2012-01-01 |
description |
The NF-κB pathway is regulated by SUMOylation at least at three levels: the inhibitory molecule IκBα, the IKK subunit γ/NEMO and the p52 precursor p100. Here we investigate the role of SUMO-2/3 in the degradation of IκBα and activation of NF-κB mediated by TNFα. We found that under conditions of deficient SUMOylation, an important delay in both TNFα-mediated proteolysis of IκBα and NF-κB dependent transcription occurs. In vitro and ex vivo approaches, including the use of ubiquitin-traps (TUBEs), revealed the formation of chains on IκBα containing SUMO-2/3 and ubiquitin after TNFα stimulation. The integration of SUMO-2/3 appears to promote the formation of ubiquitin chains on IκBα after activation of the TNFα signalling pathway. Furthermore, heterologous chains of SUMO-2/3 and ubiquitin promote a more efficient degradation of IκBα by the 26S proteasome in vitro compared to chains of either SUMO-2/3 or ubiquitin alone. Consistently, Ubc9 silencing reduced the capture of IκBα modified with SUMO-ubiquitin hybrid chains that display a defective proteasome-mediated degradation. Thus, hybrid SUMO-2/3-ubiquitin chains increase the susceptibility of modified IκBα to the action of 26S proteasome, contributing to the optimal control of NF-κB activity after TNFα-stimulation. |
url |
http://europepmc.org/articles/PMC3527444?pdf=render |
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