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TNF-alpha/IL-1/NF-kappaB transduction pathway in human cancer prostate
M Royuela1, G Rodríguez-Berriguete, B Fraile
1Department of Cell Biology and Genetics, University of Alcalá, Alcalá de Henares, Madrid, Spain. mar.royuela@uah.es
Abstract:
TNFalpha exerts apoptosis throughout an intracellular transduction pathway that involves the kinase proteins TRAF-2 (integration point of apoptotic and survival signals), ASK1 (pro-apoptotic protein), MEK-4 (p38 activator and metastasis suppressor gene), JNK (stress mitogen activated protein kinase) and the transcription factor AP-1. TNFalpha also exerts proliferation by p38 activation, or when TRAF-2 simultaneously induces the transcription factor NF-kappaB by NIK. NIK and p38 may also be activated by IL-1. P38 activated several transcription factors such as Elk-1, ATF-2 and NF-kappaB. NIK also may activate NF-kappaB. The aim of the present article was to evaluate the different components of this TNFalpha/IL-1 transduction pathway in human prostate carcinoma (PC) in comparison with normal human prostate. In prostate cancer, pro-apoptotic TNFalpha/AP-1 pathway is probably inactivated by different factors such as p21 (at ASK-1 level) and bcl-2 (at JNK level), or diverted towards p38 or NIK activation. IL-1alpha enhances proliferation through IL-1RI that activates either NIK or p38 transduction pathway. P38 and NIK activate different transcription factors related with cell proliferation and survival such as ATF-2, Elk-1 or NF-kappaB. In order to search a possible target to cancer prostate treatment we proposed that inhibition of several proinflamatory cytokines such as IL-1 and TNFalpha might be a possible target for PC treatment, because decrease the activity of all transduction pathway members that activate transcription factors as NF-kappaB, Elk-1 or ATF-2.
Insights
Tumor necrosis factor-alpha (TNFalpha) and interleukin-1 (IL-1) signaling pathways promote prostate cancer proliferation. Inhibiting these pro-inflammatory cytokines may offer a novel therapeutic strategy for prostate cancer (PC).
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- Tumor necrosis factor-alpha (TNFalpha) and interleukin-1 (IL-1) are key cytokines involved in cellular processes.
- These cytokines activate complex intracellular signal transduction pathways.
- Dysregulation of these pathways is implicated in cancer development and progression.
Purpose of the Study:
- To investigate the TNFalpha/IL-1 signal transduction pathway components in human prostate carcinoma (PC) versus normal prostate tissue.
- To identify potential therapeutic targets for prostate cancer treatment within these pathways.
Main Methods:
- Comparative analysis of TNFalpha/IL-1 pathway components in PC and normal prostate samples.
- Evaluation of key kinase proteins (TRAF-2, ASK1, MEK-4, JNK, p38) and transcription factors (AP-1, NF-kappaB, Elk-1, ATF-2).
Main Results:
- The pro-apoptotic TNFalpha/AP-1 pathway appears inactivated in prostate cancer, potentially due to p21 and bcl-2.
- Prostate cancer cells exhibit diversion towards p38 or NIK activation, promoting proliferation.
- IL-1 signaling enhances proliferation by activating NIK or p38, leading to transcription factor activation.
Conclusions:
- The TNFalpha and IL-1 signaling pathways are significantly altered in prostate cancer, favoring proliferation over apoptosis.
- Targeting pro-inflammatory cytokines like IL-1 and TNFalpha could be a viable therapeutic strategy for PC.
- Inhibition may decrease the activity of key transcription factors (NF-kappaB, Elk-1, ATF-2) driving cancer cell growth.
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