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Describing a Transcription Factor Dependent Regulation of the MicroRNA Transcriptome
Published on: June 15, 2016
A requirement of STAT3 DNA binding precludes Th-1 immunostimulatory gene expression by NF-κB in tumors
Heehyoung Lee1, Jiehui Deng, Hong Xin
1Department of Cancer Immunotherapeutics and Tumor Immunology, Beckman Research Institute, City of Hope National Medical Center, Duarte, California 91010, USA.
Abstract:
Both STAT3 and NF-κB are persistently activated in diverse cancers and promote tumor cell proliferation, survival, angiogenesis, and metastasis through transcriptional activation of multiple common genes. Paradoxically, STAT3 also suppresses many NF-κB-inducible genes involved in innate and adaptive antitumor immunity in spite of elevated levels of NF-κB in tumors. In this study, we show that expression of many NF-κB downstream target genes in tumors depends on STAT3 DNA binding. When STAT3 is elevated in tumor cells and tumor-infiltrating immune cells, persistently activated NF-κB interacts with STAT3 and preferentially binds to genes with STAT3-binding site(s) in promoters. A large number of NF-κB downstream genes associated with oncogenesis and chronic inflammation contain STAT3 DNA-binding site(s). However, in contrast, many genes frequently associated with antitumor immunity lack STAT3 DNA-binding site(s) and can only be activated by NF-κB when STAT3 is inhibited in tumors. The introduction of STAT3 DNA-binding sequences by site-specific mutagenesis in an immunostimulatory gene promoter allows its transcriptional activation by NF-κB in tumor cells. Furthermore, STAT3 facilitates NF-κB binding to genes that are important for tumor growth while inhibiting its binding to Th-1 immunostimulatory genes in growing tumors, including in tumor-infiltrating immune cells. The results of this study provide insight into how some of the oncogenic/inflammatory and Th-1 immunostimulatory genes are differentially regulated in cancer.
Insights
Signal transducer and activator of transcription 3 (STAT3) and nuclear factor kappa B (NF-κB) interact to control cancer-promoting genes. STAT3 binding is crucial for NF-κB to activate oncogenic genes while suppressing antitumor immunity genes.
Area of Science:
- Molecular Biology
- Cancer Biology
- Immunology
Background:
- Signal transducer and activator of transcription 3 (STAT3) and nuclear factor kappa B (NF-κB) are key transcription factors persistently activated in various cancers.
- These factors regulate genes involved in tumor proliferation, survival, angiogenesis, and metastasis.
- STAT3 paradoxically suppresses NF-κB-driven antitumor immune genes despite elevated NF-κB levels in tumors.
Purpose of the Study:
- To investigate the regulatory role of STAT3 DNA binding in the expression of NF-κB target genes in cancer.
- To elucidate how STAT3 influences the binding of NF-κB to oncogenic and immunostimulatory genes.
Main Methods:
- Analysis of STAT3 DNA binding in relation to NF-κB target gene expression in tumor cells and immune cells.
- Site-specific mutagenesis to introduce STAT3-binding sequences into gene promoters.
- Investigating the interaction between STAT3 and NF-κB on gene promoters.
Main Results:
- Expression of many NF-κB downstream genes in tumors is dependent on STAT3 DNA binding.
- Elevated STAT3 in tumors leads to NF-κB interacting with STAT3 and preferentially binding to genes with STAT3-binding sites.
- Genes associated with antitumor immunity lack STAT3-binding sites and are activated by NF-κB only upon STAT3 inhibition.
- STAT3 facilitates NF-κB binding to tumor growth genes while inhibiting binding to Th-1 immunostimulatory genes.
Conclusions:
- STAT3 plays a critical role in directing NF-κB binding to specific gene sets, thereby regulating both oncogenic and immune responses in the tumor microenvironment.
- Understanding this STAT3-NF-κB interplay provides insights into differential gene regulation in cancer, impacting oncogenesis and antitumor immunity.
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