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Protein Purification-free Method of Binding Affinity Determination by Microscale Thermophoresis
Published on: August 15, 2013
STAT3 inhibition in prostate and pancreatic cancer lines by STAT3 binding sequence oligonucleotides: differential
H Dan Lewis1, Ashley Winter, Thomas F Murphy
1Department of Surgery, University of Medicine and Dentistry of New Jersey, New Jersey Medical School, 185 South Orange Avenue, Newark, NJ 07103, USA.
Abstract:
Signal transducers and activators of transcription (STAT) were originally discovered as components of signal transduction pathways. Persistent aberrant activation of STAT3 is a feature of many malignancies including prostate cancer and pancreatic cancer. One consequence of persistently activated STAT3 in malignant cells is that they depend on it for survival; thus, STAT3 is an excellent molecular target for therapy. Previously, we reported that single-stranded oligonucleotides containing consensus STAT3 binding sequences (13410 and 13411) were more effective for inducing apoptosis in prostate cancer cells than antisense STAT3 oligonucleotides. Control oligonucleotides (scrambled sequences) had no effect. Here, we report that authentic STAT3 binding sequences, identified from published literature, were more effective for inducing apoptosis in prostate cancer cells and pancreatic cancer cells than was oligonucleotide 13410. Moreover, the authentic STAT3 binding sequences showed differing efficacies in the malignant cell lines depending on whether the canonical STAT3 binding sequence was truncated at the 5' or the 3' end. Finally, expression of one STAT3-regulated gene was decreased following treatment, suggesting that STAT3 may regulate the same set of genes in the two types of cancer. We conclude that truncating the 5' end left intact enough of the canonical STAT3 binding site for effective hybridization to the genome, whereas truncation of the 3' end, which is outside the canonical binding site, may have affected binding of required cofactors essential for STAT3 activity, thereby reducing the capacity of this modified oligonucleotide to induce apoptosis. Additional experiments to answer this hypothesis are under way.
Insights
Authentic STAT3 binding sequences effectively induce apoptosis in prostate and pancreatic cancer cells. Truncating the 5' end of these sequences enhances efficacy, while 3' truncation reduces it, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- Aberrant activation of Signal Transducers and Activators of Transcription 3 (STAT3) is common in various cancers, including prostate and pancreatic cancer.
- STAT3 dependence for survival in malignant cells makes it a key therapeutic target.
- Previous studies indicated STAT3 binding sequences are more effective than antisense oligonucleotides for inducing apoptosis.
Purpose of the Study:
- To evaluate the efficacy of authentic STAT3 binding sequences in inducing apoptosis in prostate and pancreatic cancer cells.
- To investigate the impact of 5' and 3' end truncation on the efficacy of STAT3 binding sequences.
- To explore the potential of STAT3-regulated gene expression in different cancer types.
Main Methods:
- Treatment of prostate and pancreatic cancer cell lines with authentic STAT3 binding sequences and truncated variants.
- Assessment of apoptosis induction.
- Analysis of STAT3-regulated gene expression.
Main Results:
- Authentic STAT3 binding sequences demonstrated higher efficacy in inducing apoptosis compared to a previously studied oligonucleotide (13410).
- Truncation of the 5' end of the STAT3 binding sequence maintained or enhanced efficacy, while 3' end truncation reduced it.
- A decrease in the expression of a STAT3-regulated gene was observed, suggesting conserved gene regulation across cancer types.
Conclusions:
- Authentic STAT3 binding sequences are potent inducers of apoptosis in prostate and pancreatic cancer.
- The integrity of the canonical STAT3 binding site, particularly the 5' end, is crucial for oligonucleotide efficacy.
- Targeting STAT3 with modified binding sequences presents a viable therapeutic strategy for STAT3-dependent cancers.
