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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Arsenic-induced circFNDC3B regulates apoptosis through dysregulation of NF-κB Signaling
Jinyun Jiang1, He Ma1, Na Liu1
1Yunnan Provincial Key Laboratory of Public Health and Biosafety & School of Public Health, Kunming Medical University, 1168 West Chunrong Road, Yuhua Avenue, Chenggong District, Kunming, Yunnan 650500, China.
Abstract:
Arsenic is a widely distributed environmental toxicant that significantly increases the risk of developing multiple tumors. Limited information is available, however, on whether arsenic can regulate circFNDC3B to exert its toxicological responses. We provide evidence herein that circFNDC3B expression was upregulated in a dose-dependent manner in A549 cells treated with sodium arsenite. Silencing circFNDC3B suppressed A549 cell proliferation and induced apoptosis. We then examined the protein levels of key proliferation-and apoptosis-related genes within the NF-κB and p53 pathways following circFNDC3B silencing. Results demonstrated that silencing circFNDC3B significantly elevated total p53 protein levels, but reduced phosphorylation at Ser392/Ser315 and downregulation of key downstream effectors (MDM2, Bak, Bax, PUMA, p21). Critically, circFNDC3B silencing dramatically reduced the interaction between IKKβ and the NF-κB subunit p65. This impaired binding directly disrupted canonical NF-κB signaling, as evidenced by markedly diminished phosphorylation of p65 and IκBα, along with significantly decreased the expressions of downstream NF-κB target genes. These genes included pivotal anti-apoptotic factors (Bcl-2, XIAP, cIAP1, cIAP2, FLIP) and cell cycle regulators (Cyclin D1, PCNA). In conclusion, arsenic induced circFNDC3B expression, and circFNDC3B acted as anti-apoptotic and pro-survival effects through dysregulation of NF-κB pathways, potentially serving as a novel therapeutic target in lung cancer.
Insights
Arsenic exposure increases lung cancer risk by upregulating circFNDC3B. Silencing this circular RNA inhibits cancer cell growth and survival by disrupting NF-κB signaling pathways.
Area of Science:
- Environmental Toxicology
- Molecular Biology
- Cancer Research
Background:
- Arsenic is a known carcinogen linked to various tumors.
- The role of circular RNA (circFNDC3B) in arsenic-induced toxicity remains unclear.
Purpose of the Study:
- To investigate the effect of arsenic on circFNDC3B expression.
- To elucidate the role of circFNDC3B in arsenic-induced lung cancer cell proliferation and apoptosis.
- To explore the underlying molecular mechanisms involving NF-κB and p53 pathways.
Main Methods:
- A549 lung cancer cells were treated with sodium arsenite.
- circFNDC3B was silenced using siRNA.
- Cell proliferation, apoptosis, and protein levels of key signaling molecules were analyzed.
- Protein-protein interactions (IKKβ-p65) and signaling pathway activation were assessed.
Main Results:
- Arsenic upregulated circFNDC3B expression in a dose-dependent manner.
- Silencing circFNDC3B suppressed proliferation and induced apoptosis in A549 cells.
- circFNDC3B silencing inhibited NF-κB signaling by reducing IKKβ-p65 interaction and downstream gene expression.
- It also affected p53 pathway components, including reduced p53 phosphorylation and altered downstream effector levels.
Conclusions:
- Arsenic induces circFNDC3B expression, promoting anti-apoptotic and pro-survival effects in lung cancer cells.
- circFNDC3B dysregulates NF-κB signaling, contributing to arsenic's toxicological effects.
- circFNDC3B represents a potential therapeutic target for lung cancer treatment.
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