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IL1- and TGFβ-Nox4 signaling, oxidative stress and DNA damage response are shared features of replicative, oncogene-induced, and drug-induced paracrine 'bystander senescence'
S. Hubackova, K. Krejcikova, J. Bartek, Z. Hodny,
Language English Country United States
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 2009
Freely Accessible Science Journals
from 2009-01-01
PubMed Central
from 2009
Europe PubMed Central
from 2009
Open Access Digital Library
from 2009-01-01
PubMed
23385065
DOI
10.18632/aging.100520
Knihovny.cz E-resources
- MeSH
- Cell Line MeSH
- Bystander Effect drug effects MeSH
- Etoposide pharmacology MeSH
- Genes, ras * MeSH
- Interleukin-1 metabolism MeSH
- Interleukin-6 metabolism MeSH
- Janus Kinases metabolism MeSH
- Culture Media, Conditioned metabolism MeSH
- Humans MeSH
- NADPH Oxidases metabolism MeSH
- NF-kappa B metabolism MeSH
- Oxidative Stress drug effects MeSH
- Paracrine Communication drug effects MeSH
- DNA Damage * MeSH
- Cell Proliferation * MeSH
- Smad Proteins metabolism MeSH
- RNA Interference MeSH
- Signal Transduction drug effects MeSH
- Cellular Senescence drug effects MeSH
- Transfection MeSH
- Transforming Growth Factor beta metabolism MeSH
- STAT Transcription Factors metabolism MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
Many cancers arise at sites of infection and inflammation. Cellular senescence, a permanent state of cell cycle arrest that provides a barrier against tumorigenesis, is accompanied by elevated proinflammatory cytokines such as IL1, IL6, IL8 and TNFα. Here we demonstrate that media conditioned by cells undergoing any of the three main forms of senescence, i.e. replicative, oncogene- and drug-induced, contain high levels of IL1, IL6, and TGFb capable of inducing reactive oxygen species (ROS)-mediated DNA damage response (DDR). Persistent cytokine signaling and activated DDR evoke senescence in normal bystander cells, accompanied by activation of the JAK/STAT, TGFβ/SMAD and IL1/NFκB signaling pathways. Whereas inhibition of IL6/STAT signaling had no effect on DDR induction in bystander cells, inhibition of either TGFβ/SMAD or IL1/NFκB pathway resulted in decreased ROS production and reduced DDR in bystander cells. Simultaneous inhibition of both TGFβ/SMAD and IL1/NFκB pathways completely suppressed DDR indicating that IL1 and TGFβ cooperate to induce and/or maintain bystander senescence. Furthermore, the observed IL1- and TGFβ-induced expression of NAPDH oxidase Nox4 indicates a mechanistic link between the senescence-associated secretory phenotype (SASP) and DNA damage signaling as a feature shared by development of all major forms of paracrine bystander senescence.
References provided by Crossref.org
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