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Merging Absolute and Relative Quantitative PCR Data to Quantify STAT3 Splice Variant Transcripts
Published on: October 9, 2016
Phosphorylated STAT3 physically interacts with NPM and transcriptionally enhances its expression in cancer
11] Laboratory of Medical and Molecular Oncology (LMMO), Department of Medical Oncology, UZ Brussel, Vrije Universiteit Brussel, Brussels, Belgium [2] Department of General Surgery, The first People's Hospital of Shanghai, Shanghai Jiaotong University, Shanghai, China [3] Department of Medical Oncology, Oncologisch Centrum of the Universitair Ziekenhuis Brussel, Vrije Universiteit Brussel, Brussels, Belgium.
Abstract:
The signal transducer and activator of transcription 3 (STAT3) can be activated by the tyrosine kinase domain of the chimeric protein nucleophosmin/anaplastic lymphoma kinase (NPM/ALK), and has a pivotal role in mediating NPM/ALK-related malignant cell transformation. Although the role of STAT3 and wild-type NPM in oncogenesis has been extensively investigated, the relationship between both molecules in cancer remains poorly understood. In the present study, we first demonstrate that STAT3 phosphorylation at tyrosine 705 is accompanied by a concomitant increase in the expression level of NPM. Nuclear co-translocation of phosphorylated STAT3 with NPM can be triggered by interferon-alpha (IFN-α) stimulation of Jurkat cells and phosphorylated STAT3 co-localizes with NPM in cancer cells showing constitutive STAT3 activation. We further demonstrate that STAT3 phosphorylation can transcriptionally mediate NPM upregulation in IFN-α-stimulated Jurkat cells and is responsible for maintaining its expression in cancer cells showing constitutive STAT3 activation. Inhibition of STAT3 phosphorylation or knockdown of NPM expression abrogates their simultaneous transnuclear movements. Finally, we found evidence for a physical interaction between NPM and STAT3 in conditions of STAT3 activation. In conclusion, NPM is a downstream effector of the STAT3 signaling, and can facilitate the nuclear entry of phosphorylated STAT3. These observations might open novel opportunities for targeting the STAT3 pathway in cancer.
Insights
Signal transducer and activator of transcription 3 (STAT3) activation increases nucleophosmin (NPM) expression. NPM facilitates phosphorylated STAT3 nuclear entry, suggesting NPM is a downstream effector and a potential cancer therapy target.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Signaling
Background:
- Signal transducer and activator of transcription 3 (STAT3) is activated by NPM/ALK in malignant cell transformation.
- The relationship between STAT3 and wild-type NPM in cancer is not well understood.
Purpose of the Study:
- To investigate the relationship between STAT3 and NPM in cancer.
- To elucidate the role of STAT3 in regulating NPM expression and function.
Main Methods:
- Investigated STAT3 phosphorylation and NPM expression levels.
- Examined nuclear co-translocation of STAT3 and NPM using immunofluorescence.
- Assessed the effect of STAT3 inhibition and NPM knockdown on their interaction.
- Analyzed physical interaction between STAT3 and NPM.
Main Results:
- STAT3 phosphorylation correlates with increased NPM expression.
- Interferon-alpha (IFN-α) stimulation induces nuclear co-translocation of phosphorylated STAT3 and NPM in Jurkat cells.
- Phosphorylated STAT3 upregulates NPM transcription and maintains its expression in cancer cells.
- STAT3 inhibition or NPM knockdown prevents their nuclear movement.
- A physical interaction between NPM and STAT3 occurs upon STAT3 activation.
Conclusions:
- Nucleophosmin (NPM) is a downstream effector of STAT3 signaling.
- NPM facilitates the nuclear entry of phosphorylated STAT3.
- These findings offer potential new strategies for targeting the STAT3 pathway in cancer therapy.
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