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Published on: January 12, 2020
NF-κB p65 recruited SHP regulates PDCD5-mediated apoptosis in cancer cells
Farhan Murshed1, Lulu Farhana, Marcia I Dawson
1Department of Oncology, John D Dingell VA Medical Center, 11M-HO, Room C3687, 4646 John R Street, Detroit, MI, 48201, USA.
Abstract:
Transcription factor NF-κB promotes cell proliferation in response to cell injury. Increasing evidence, however, suggests that NF-κB can also play an apoptotic role depending on the stimulus and cell type. We have previously demonstrated that novel retinoid 4-[3-Cl-(1-adamantyl)-4-hydroxyphenyl]-3-chlorocinnamic acid (3-Cl-AHPC)-mediated apoptosis in breast carcinoma cells requires activation of canonical and non-canonical NF-κB pathways. The mechanism NF-κB uses to induce apoptosis remains largely unknown. NF-κB subunit p65 (RelA) was identified as one potent transcriptional activator in 3-Cl-AHPC-mediated apoptosis in cells. Here we used ChIP-on-chip to identify NF-κB p65 genes activated in 3-Cl-AHPC mediated apoptosis. This paper focuses on one hit: pro-apoptotic protein programmed cell death 5 (PDCD5). 3-Cl-AHPC mediated apoptosis in MDA-MB-468 had three related effects on PDCD5: NF-κB p65 binding to the PDCD5 gene, enhanced PDCD5 promoter activity, and increased PDCD5 protein expression. Furthermore, 3-Cl-AHPC increased orphan nuclear receptor small heterodimer partner (SHP) mRNA expression, increased SHP protein bound to NF-κB p65, and found the SHP/NF-κB p65 complex attached to the PDCD5 gene. PDCD5 triggered apoptosis through increased Bax protein and release of cytochrome C from mitochondria to cytosol. Lastly, knockdown of PDCD5 protein expression blocked 3-Cl-AHPC mediated apoptosis, while over-expression of PDCD5 enhanced apoptosis, suggesting PDCD5 is necessary and sufficient for NF-κB p65 mediated apoptosis. Our results demonstrate a novel pathway for NF-κB p65 in regulating apoptosis through SHP and PDCD5.
Insights
This study reveals a new pathway where NF-κB p65, through SHP and PDCD5, induces apoptosis in breast cancer cells. PDCD5 is essential for this NF-κB-mediated cell death.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Nuclear factor-kappa B (NF-κB) typically promotes cell proliferation but can induce apoptosis.
- Retinoid 3-Cl-AHPC triggers apoptosis in breast cancer cells via NF-κB pathways.
- The precise mechanism of NF-κB-induced apoptosis is not fully understood.
Purpose of the Study:
- To identify genes regulated by NF-κB p65 during 3-Cl-AHPC-induced apoptosis.
- To elucidate the role of programmed cell death 5 (PDCD5) in this apoptotic process.
Main Methods:
- ChIP-on-chip assay to identify NF-κB p65 target genes.
- Analysis of PDCD5 and small heterodimer partner (SHP) expression and binding.
- Assessment of apoptosis markers like Bax and cytochrome C release.
- Gene knockdown and overexpression studies.
Main Results:
- NF-κB p65 binds to the PDCD5 gene, enhancing its promoter activity and protein expression.
- 3-Cl-AHPC increases SHP expression, which binds to NF-κB p65 and associates with the PDCD5 gene.
- PDCD5 promotes apoptosis via Bax upregulation and cytochrome C release.
- PDCD5 is necessary and sufficient for 3-Cl-AHPC-induced apoptosis mediated by NF-κB p65.
Conclusions:
- A novel NF-κB p65-mediated apoptosis pathway involving SHP and PDCD5 is identified.
- PDCD5 acts as a key mediator in retinoid-induced apoptosis in breast cancer cells.
- This pathway offers potential therapeutic targets for breast cancer treatment.
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