Cargando…

An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration

The I-κB-Kinase (IKK) complex represents a central signaling nexus in the TNF-dependent activation of the pro-inflammatory NF-κB pathway. However, recent studies suggested that the distinct IKK subunits (IKKα, IKKβ, and NEMO) might withhold additional NF-κB-independent functions in inflammation and...

Descripción completa

Detalles Bibliográficos
Autores principales: Koppe, Christiane, Reisinger, Florian, Wehr, Karina, Vucur, Mihael, Trautwein, Christian, Tacke, Frank, Heikenwalder, Mathias, Luedde, Tom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678501/
https://www.ncbi.nlm.nih.gov/pubmed/31319593
http://dx.doi.org/10.3390/cancers11070999
_version_ 1783441116019818496
author Koppe, Christiane
Reisinger, Florian
Wehr, Karina
Vucur, Mihael
Trautwein, Christian
Tacke, Frank
Heikenwalder, Mathias
Luedde, Tom
author_facet Koppe, Christiane
Reisinger, Florian
Wehr, Karina
Vucur, Mihael
Trautwein, Christian
Tacke, Frank
Heikenwalder, Mathias
Luedde, Tom
author_sort Koppe, Christiane
collection PubMed
description The I-κB-Kinase (IKK) complex represents a central signaling nexus in the TNF-dependent activation of the pro-inflammatory NF-κB pathway. However, recent studies suggested that the distinct IKK subunits (IKKα, IKKβ, and NEMO) might withhold additional NF-κB-independent functions in inflammation and cancer. Here, we generated mice lacking all three IKK subunits in liver parenchymal cells (LPC) (IKKα/β/NEMO(LPC-KO)) and compared their phenotype with mice lacking both catalytic subunits (IKKα/β(LPC-KO)), allowing to functionally dissect putative I-κB-Kinase-independent functions of the regulatory subunit NEMO. We show that the additional deletion of NEMO rescues IKKα/β(LPC-KO) mice from lethal cholestasis and biliary ductopenia by triggering LPC apoptosis and inducing a strong compensatory proliferation of LPC including cholangiocytes. Beyond this beneficial effect, we show that increased hepatocyte cell-death and compensatory proliferation inhibit the activation of LPC-necroptosis but trigger spontaneous hepatocarcinogenesis in IKKα/β/NEMO(LPC-KO) mice. Collectively, our data show that free NEMO molecules unbound to the catalytic IKK subunits control LPC programmed cell death pathways and proliferation, cholestasis and hepatocarcinogenesis independently of an IKK-related function. These findings support the idea of different functional levels at which NEMO controls inflammation and cancer in the liver.
format Online
Article
Text
id pubmed-6678501
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66785012019-08-19 An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration Koppe, Christiane Reisinger, Florian Wehr, Karina Vucur, Mihael Trautwein, Christian Tacke, Frank Heikenwalder, Mathias Luedde, Tom Cancers (Basel) Article The I-κB-Kinase (IKK) complex represents a central signaling nexus in the TNF-dependent activation of the pro-inflammatory NF-κB pathway. However, recent studies suggested that the distinct IKK subunits (IKKα, IKKβ, and NEMO) might withhold additional NF-κB-independent functions in inflammation and cancer. Here, we generated mice lacking all three IKK subunits in liver parenchymal cells (LPC) (IKKα/β/NEMO(LPC-KO)) and compared their phenotype with mice lacking both catalytic subunits (IKKα/β(LPC-KO)), allowing to functionally dissect putative I-κB-Kinase-independent functions of the regulatory subunit NEMO. We show that the additional deletion of NEMO rescues IKKα/β(LPC-KO) mice from lethal cholestasis and biliary ductopenia by triggering LPC apoptosis and inducing a strong compensatory proliferation of LPC including cholangiocytes. Beyond this beneficial effect, we show that increased hepatocyte cell-death and compensatory proliferation inhibit the activation of LPC-necroptosis but trigger spontaneous hepatocarcinogenesis in IKKα/β/NEMO(LPC-KO) mice. Collectively, our data show that free NEMO molecules unbound to the catalytic IKK subunits control LPC programmed cell death pathways and proliferation, cholestasis and hepatocarcinogenesis independently of an IKK-related function. These findings support the idea of different functional levels at which NEMO controls inflammation and cancer in the liver. MDPI 2019-07-17 /pmc/articles/PMC6678501/ /pubmed/31319593 http://dx.doi.org/10.3390/cancers11070999 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Koppe, Christiane
Reisinger, Florian
Wehr, Karina
Vucur, Mihael
Trautwein, Christian
Tacke, Frank
Heikenwalder, Mathias
Luedde, Tom
An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title_full An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title_fullStr An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title_full_unstemmed An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title_short An NF-kappaB- and IKK-Independent Function of NEMO Prevents Hepatocarcinogenesis by Suppressing Compensatory Liver Regeneration
title_sort nf-kappab- and ikk-independent function of nemo prevents hepatocarcinogenesis by suppressing compensatory liver regeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678501/
https://www.ncbi.nlm.nih.gov/pubmed/31319593
http://dx.doi.org/10.3390/cancers11070999
work_keys_str_mv AT koppechristiane annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT reisingerflorian annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT wehrkarina annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT vucurmihael annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT trautweinchristian annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT tackefrank annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT heikenwaldermathias annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT lueddetom annfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT koppechristiane nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT reisingerflorian nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT wehrkarina nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT vucurmihael nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT trautweinchristian nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT tackefrank nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT heikenwaldermathias nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration
AT lueddetom nfkappabandikkindependentfunctionofnemopreventshepatocarcinogenesisbysuppressingcompensatoryliverregeneration