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Importance of STAT3 signalling in cancer, metastasis and therapeutic interventions
Mohamed El-Tanani1, Arwa Omar Al Khatib2, Safwan Mahmoud Aladwan2
1Pharmacological and Diagnostic Research Centre, Al-Ahliyya Amman University, Faculty of Pharmacy, Amman, Jordan; Centre for Cancer Research and Cell Biology, Queen's University Belfast, Grosvenor Road, Belfast BT12 6BJ, Northern Ireland, United Kingdom; Institute of Cancer Therapeutics, Faculty of Life Sciences, University of Bradford, Bradford, United Kingdom.
Abstract:
The Signal Transducer and Activator of Transcription 3 (STAT3) protein is encoded on chromosome 17q21. The SH2 and the DNA binding domains are critical structural components of the protein, together with tyrosine and serine residues that initiate phosphorylation. STAT3 interacts with DNA directly and functions in cells as both a signal transducer and a transcription factor. Its cytoplasmic activation results in dimerisation and nuclear translocation, where it is involved in the transcription of a large number of target genes. STAT3 is hyperactive in cancer cells as a result of upstream STAT3 mutations or enhanced cytokine production in the tumour environment. The STAT3 signalling pathway promotes many hallmarks of carcinogenesis and metastasis, including enhanced cell proliferation and survival, as well as migration and invasion into the extracellular matrix. Recent investigations into novel STAT3-based therapies describe a range of innovative approaches, such as the use of novel oligonucleotide drugs. These limit STAT3 binding to its target genes by attaching to SH2 and DNA-binding domains. Yet, despite these significant steps in understanding the underpinning mechanisms, there are currently no therapeutic agents that addresses STAT3 signalling in a clinically relevant manner.
Insights
Signal Transducer and Activator of Transcription 3 (STAT3) is hyperactive in cancer, promoting tumor growth and metastasis. Novel oligonucleotide drugs targeting STAT3
Area of Science:
- Molecular Biology
- Cancer Biology
- Biochemistry
Background:
- Signal Transducer and Activator of Transcription 3 (STAT3) is a critical protein involved in cellular signaling.
- STAT3's hyperactivity in cancer cells drives tumor progression and metastasis.
- Understanding STAT3's role is crucial for developing targeted cancer therapies.
Purpose of the Study:
- To review the role of STAT3 in cancer.
- To explore novel therapeutic strategies targeting STAT3.
- To highlight the current limitations in STAT3-targeted cancer treatment.
Main Methods:
- Literature review of STAT3 function and signaling pathways.
- Analysis of recent advancements in STAT3-based therapeutic approaches.
- Examination of the mechanisms of action for novel oligonucleotide drugs.
Main Results:
- STAT3 signaling pathway promotes key cancer hallmarks like proliferation, survival, migration, and invasion.
- Novel oligonucleotide drugs demonstrate potential by inhibiting STAT3 binding to DNA.
- These drugs target critical domains like SH2 and DNA-binding domains.
Conclusions:
- STAT3 is a significant driver of carcinogenesis and metastasis.
- Innovative therapies, including oligonucleotide drugs, are being developed to target STAT3.
- Despite progress, clinically approved STAT3-targeting agents are still lacking.
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