Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia

Background & Aims: The nuclear factor κB (NF-κB)/IκB-kinase-β (IKKβ) pathway has been shown to represent a key link between inflammation and cancer, inducing pro-inflammatory cytokines in myeloid cells and anti-apoptotic pathways in epithelial cells. However, the role of NF-κB pathway in gast...

Full description

Bibliographic Details
Main Authors: Shibata, Wataru, Takaishi, Shigeo, Muthupalani, Sureshkumar, Pritchard, D. Mark, Whary, Mark T., Rogers, Arlin B., Fox, James G., Betz, Kelly S., Kaestner, Klaus H., Karin, Michael, Wang, Timothy C.
Other Authors: Massachusetts Institute of Technology. Department of Biological Engineering
Format: Article
Language:en_US
Published: Elsevier B.V. 2011
Online Access:http://hdl.handle.net/1721.1/67281
https://orcid.org/0000-0001-9307-6116
_version_ 1826196381395582976
author Shibata, Wataru
Takaishi, Shigeo
Muthupalani, Sureshkumar
Pritchard, D. Mark
Whary, Mark T.
Rogers, Arlin B.
Fox, James G.
Betz, Kelly S.
Kaestner, Klaus H.
Karin, Michael
Wang, Timothy C.
author2 Massachusetts Institute of Technology. Department of Biological Engineering
author_facet Massachusetts Institute of Technology. Department of Biological Engineering
Shibata, Wataru
Takaishi, Shigeo
Muthupalani, Sureshkumar
Pritchard, D. Mark
Whary, Mark T.
Rogers, Arlin B.
Fox, James G.
Betz, Kelly S.
Kaestner, Klaus H.
Karin, Michael
Wang, Timothy C.
author_sort Shibata, Wataru
collection MIT
description Background & Aims: The nuclear factor κB (NF-κB)/IκB-kinase-β (IKKβ) pathway has been shown to represent a key link between inflammation and cancer, inducing pro-inflammatory cytokines in myeloid cells and anti-apoptotic pathways in epithelial cells. However, the role of NF-κB pathway in gastric carcinogenesis and injury has not been well-defined. We derived mice with a conditional knockout of IKKβ in gastric epithelial cells (GECs) and myeloid cells, and examined responses to ionizing radiation (IR) and Helicobacter felis infection. Methods: IkkβΔstom mice were generated by crossing Foxa3-Cre mice to IkkβF/F mice. Cellular stress was induced with IR and H felis in IkkβΔstom, IkkβF/F, and cis-NF-κB–enhanced green fluorescent protein (GFP) reporter mice. Gastric histopathology, apoptosis, proliferation, necrosis, reactive oxygen species, and expression of cytokines, chemokines, and anti-apoptotic genes were assessed. The role of myeloid IKKβ in these models was studied by crosses with LysM-Cre mice. Results: NF-κB activity was upregulated in myeloid cells with acute H felis infection, but in GECs by IR or long-term H felis infection during progression to dysplasia. Deletion of IKKβ in GECs led to increased apoptosis, reactive oxygen species, and cellular necrosis, and resulted in up-regulation of interleukin-1α and down-regulation of anti-apoptotic genes. Loss of IKKβ in GECs resulted in worse inflammation and more rapid progression to gastric preneoplasia, while loss of IKKβ in myeloid cells inhibited development of gastric atrophy. Conclusions: The loss of IKKβ/NF-κB signaling in GECs results in increased apoptosis and necrosis in response to cellular stress, and accelerated development of dysplasia by Helicobacter infection.
first_indexed 2024-09-23T10:25:38Z
format Article
id mit-1721.1/67281
institution Massachusetts Institute of Technology
language en_US
last_indexed 2024-09-23T10:25:38Z
publishDate 2011
publisher Elsevier B.V.
record_format dspace
spelling mit-1721.1/672812022-09-30T21:02:44Z Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia Conditional Deletion of IκB-Kinase-β Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia Shibata, Wataru Takaishi, Shigeo Muthupalani, Sureshkumar Pritchard, D. Mark Whary, Mark T. Rogers, Arlin B. Fox, James G. Betz, Kelly S. Kaestner, Klaus H. Karin, Michael Wang, Timothy C. Massachusetts Institute of Technology. Department of Biological Engineering Massachusetts Institute of Technology. Division of Comparative Medicine Fox, James G. Whary, Mark T. Rogers, Arlin B. Fox, James G. Background & Aims: The nuclear factor κB (NF-κB)/IκB-kinase-β (IKKβ) pathway has been shown to represent a key link between inflammation and cancer, inducing pro-inflammatory cytokines in myeloid cells and anti-apoptotic pathways in epithelial cells. However, the role of NF-κB pathway in gastric carcinogenesis and injury has not been well-defined. We derived mice with a conditional knockout of IKKβ in gastric epithelial cells (GECs) and myeloid cells, and examined responses to ionizing radiation (IR) and Helicobacter felis infection. Methods: IkkβΔstom mice were generated by crossing Foxa3-Cre mice to IkkβF/F mice. Cellular stress was induced with IR and H felis in IkkβΔstom, IkkβF/F, and cis-NF-κB–enhanced green fluorescent protein (GFP) reporter mice. Gastric histopathology, apoptosis, proliferation, necrosis, reactive oxygen species, and expression of cytokines, chemokines, and anti-apoptotic genes were assessed. The role of myeloid IKKβ in these models was studied by crosses with LysM-Cre mice. Results: NF-κB activity was upregulated in myeloid cells with acute H felis infection, but in GECs by IR or long-term H felis infection during progression to dysplasia. Deletion of IKKβ in GECs led to increased apoptosis, reactive oxygen species, and cellular necrosis, and resulted in up-regulation of interleukin-1α and down-regulation of anti-apoptotic genes. Loss of IKKβ in GECs resulted in worse inflammation and more rapid progression to gastric preneoplasia, while loss of IKKβ in myeloid cells inhibited development of gastric atrophy. Conclusions: The loss of IKKβ/NF-κB signaling in GECs results in increased apoptosis and necrosis in response to cellular stress, and accelerated development of dysplasia by Helicobacter infection. National Institutes of Health (U.S.) (Grant 5R01CA093405-09) Kanae Foundation for the Promotion of the Medical Science 2008 Japan Society for the Promotion of Science 2009 2011-11-21T18:33:54Z 2011-11-21T18:33:54Z 2009-12 2009-09 Article http://purl.org/eprint/type/JournalArticle 0016-5085 1528-0012 http://hdl.handle.net/1721.1/67281 Shibata, Wataru et al. “Conditional Deletion of IκB-Kinase-β Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia.” Gastroenterology 138 (2010): 1022-1034.e10. https://orcid.org/0000-0001-9307-6116 en_US http://dx.doi.org/10.1053/j.gastro.2009.11.054 Gastroenterology Creative Commons Attribution-Noncommercial-Share Alike 3.0 http://creativecommons.org/licenses/by-nc-sa/3.0/ application/pdf Elsevier B.V. PubMed Central
spellingShingle Shibata, Wataru
Takaishi, Shigeo
Muthupalani, Sureshkumar
Pritchard, D. Mark
Whary, Mark T.
Rogers, Arlin B.
Fox, James G.
Betz, Kelly S.
Kaestner, Klaus H.
Karin, Michael
Wang, Timothy C.
Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title_full Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title_fullStr Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title_full_unstemmed Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title_short Conditional Deletion of IkappaB-Kinase-beta Accelerates Helicobacter-Dependent Gastric Apoptosis, Proliferation, and Preneoplasia
title_sort conditional deletion of ikappab kinase beta accelerates helicobacter dependent gastric apoptosis proliferation and preneoplasia
url http://hdl.handle.net/1721.1/67281
https://orcid.org/0000-0001-9307-6116
work_keys_str_mv AT shibatawataru conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT takaishishigeo conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT muthupalanisureshkumar conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT pritcharddmark conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT wharymarkt conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT rogersarlinb conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT foxjamesg conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT betzkellys conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT kaestnerklaush conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT karinmichael conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT wangtimothyc conditionaldeletionofikappabkinasebetaaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT shibatawataru conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT takaishishigeo conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT muthupalanisureshkumar conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT pritcharddmark conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT wharymarkt conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT rogersarlinb conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT foxjamesg conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT betzkellys conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT kaestnerklaush conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT karinmichael conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia
AT wangtimothyc conditionaldeletionofikbkinasebaccelerateshelicobacterdependentgastricapoptosisproliferationandpreneoplasia