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miR-29b Mediates NF-κB Signaling in KRAS-Induced Non-Small Cell Lung Cancers
Stephanie Langsch1, Ulrich Baumgartner1, Stefan Haemmig2
1Institute of Pathology, University of Bern, Bern, Switzerland. Graduate School for Cellular and Biomedical Sciences, University of Bern, Bern, Switzerland.
Abstract:
A global understanding of miRNA function in EGFR signaling pathways may provide insights into improving the management of KRAS-mutant lung cancers, which remain relatively recalcitrant to treatment. To identify miRNAs implicated in EGFR signaling, we transduced bronchial epithelial BEAS-2B cells with retroviral vectors expressing KRAS(G12V) and monitored miRNA expression patterns by microarray analysis. Through this approach, we defined miR-29b as an important target for upregulation by mutant KRAS in non-small cell lung cancers. Cell biologic analyses showed that pharmacologic inhibition of EGFR or MEK was sufficient to reduce levels of miR-29b, while PI3K inhibition had no effect. In KRAS(G12V)-transduced BEAS-2B cells, introduction of anti-miR-29b constructs increased the sensitivity to apoptosis, arguing that miR-29b mediated apoptotic resistance conferred by mutant KRAS. Mechanistic investigations traced this effect to the ability of miR-29b to target TNFAIP3/A20, a negative regulator of NF-κB signaling. Accordingly, overexpression of an miR-29b-refractory isoform of TNFAIP3 restored NF-κB and extrinsic apoptosis, confirming that TNFAIP3 is a functionally relevant target of miR-29b. We also noted that miR-29b could confer sensitivity to intrinsic apoptosis triggered by exposure to cisplatin, a drug used widely in lung cancer treatment. Thus, miR-29b expression may tilt cells from extrinsic to intrinsic mechanisms of apoptosis. Overall, our results reveal a complexity in cancer for miR-29b, which can act as either an oncogene or tumor suppressor gene depending on signaling context. Cancer Res; 76(14); 4160-9. ©2016 AACR.
Insights
Mutant KRAS upregulates miR-29b in lung cancer, promoting resistance to apoptosis by targeting TNFAIP3/A20. Inhibiting miR-29b can restore apoptosis, offering new therapeutic strategies for KRAS-mutant lung cancers.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- KRAS-mutant lung cancers are difficult to treat.
- EGFR signaling pathways are crucial in lung cancer development.
- MicroRNAs (miRNAs) play complex roles in cancer.
Purpose of the Study:
- Identify miRNAs involved in EGFR signaling in KRAS-mutant lung cancer.
- Elucidate the function of miR-29b in apoptosis regulation.
- Determine the therapeutic potential of targeting miR-29b.
Main Methods:
- Microarray analysis of miRNA expression in KRAS(G12V)-transduced BEAS-2B cells.
- Pharmacologic inhibition of EGFR, MEK, and PI3K pathways.
- Apoptosis assays using anti-miR-29b constructs and TNFAIP3 isoforms.
- Mechanistic studies investigating miR-29b targets and signaling pathways.
Main Results:
- Mutant KRAS upregulates miR-29b in non-small cell lung cancer cells.
- EGFR and MEK inhibition reduces miR-29b levels.
- miR-29b confers resistance to apoptosis by targeting TNFAIP3/A20, a negative regulator of NF-κB.
- miR-29b influences the balance between extrinsic and intrinsic apoptosis pathways.
- miR-29b can sensitize cells to cisplatin-induced apoptosis.
Conclusions:
- miR-29b is a key mediator of apoptotic resistance in KRAS-mutant lung cancer.
- Targeting miR-29b may overcome treatment resistance in these cancers.
- miR-29b exhibits context-dependent functions as an oncogene or tumor suppressor.
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