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Necdin, a negative growth regulator, is a novel STAT3 target gene down-regulated in human cancer
Rachel Haviland1, Steven Eschrich, Gregory Bloom
1Molecular Oncology, Moffitt Cancer Center and Research Institute, Tampa, Florida, United States of America.
Abstract:
Cytokine and growth factor signaling pathways involving STAT3 are frequently constitutively activated in many human primary tumors, and are known for the transcriptional role they play in controlling cell growth and cell cycle progression. However, the extent of STAT3's reach on transcriptional control of the genome as a whole remains an important question. We predicted that this persistent STAT3 signaling affects a wide variety of cellular functions, many of which still remain to be characterized. We took a broad approach to identify novel STAT3 regulated genes by examining changes in the genome-wide gene expression profile by microarray, using cells expressing constitutively-activated STAT3. Using computational analysis, we were able to define the gene expression profiles of cells containing activated STAT3 and identify candidate target genes with a wide range of biological functions. Among these genes we identified Necdin, a negative growth regulator, as a novel STAT3 target gene, whose expression is down-regulated at the mRNA and protein levels when STAT3 is constitutively active. This repression is STAT3 dependent, since inhibition of STAT3 using siRNA restores Necdin expression. A STAT3 DNA-binding site was identified in the Necdin promoter and both EMSA and chromatin immunoprecipitation confirm binding of STAT3 to this region. Necdin expression has previously been shown to be down-regulated in a melanoma and a drug-resistant ovarian cancer cell line. Further analysis of Necdin expression demonstrated repression in a STAT3-dependent manner in human melanoma, prostate and breast cancer cell lines. These results suggest that STAT3 coordinates expression of genes involved in multiple metabolic and biosynthetic pathways, integrating signals that lead to global transcriptional changes and oncogenesis. STAT3 may exert its oncogenic effect by up-regulating transcription of genes involved in promoting growth and proliferation, but also by down-regulating expression of negative regulators of the same cellular processes, such as Necdin.
Insights
Constitutively activated STAT3 signaling represses Necdin, a negative growth regulator, in various cancers. This STAT3-dependent repression contributes to oncogenesis by altering gene expression and promoting cell growth.
Area of Science:
- Molecular Biology
- Cancer Biology
- Genomics
Background:
- Signal transducer and activator of transcription 3 (STAT3) pathways are crucial in cell growth and cycle progression, often constitutively activated in human tumors.
- The full extent of STAT3's transcriptional control over the genome and its impact on cellular functions remain incompletely understood.
Purpose of the Study:
- To identify novel STAT3-regulated genes and characterize the genome-wide transcriptional effects of persistent STAT3 signaling.
- To investigate the role of Necdin, a known negative growth regulator, as a potential STAT3 target gene.
Main Methods:
- Genome-wide gene expression profiling using microarray analysis in cells with constitutively activated STAT3.
- Computational analysis to identify candidate STAT3 target genes.
- Validation of Necdin as a STAT3 target using siRNA, EMSA, and chromatin immunoprecipitation assays.
Main Results:
- Activated STAT3 significantly altered genome-wide gene expression, identifying numerous candidate target genes.
- Necdin expression was found to be down-regulated at both mRNA and protein levels in a STAT3-dependent manner.
- STAT3 directly binds to the Necdin promoter, confirming its role as a transcriptional repressor of Necdin.
- Necdin repression by STAT3 was observed in melanoma, prostate, and breast cancer cell lines.
Conclusions:
- STAT3 plays a significant role in coordinating gene expression across metabolic and biosynthetic pathways, contributing to oncogenesis.
- STAT3 promotes cancer by upregulating growth-promoting genes and downregulating negative growth regulators like Necdin.
- Targeting STAT3 may offer therapeutic strategies for cancers exhibiting Necdin repression.
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