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Deciphering the link between PI3K and PAK: An opportunity to target key pathways in pancreatic cancer?
Kiruthikah Thillai1,2, Hoyin Lam1, Debashis Sarker1,2
1Division of Cancer Studies, King's College London, London, United Kingdom.
Abstract:
The development of personalised therapies has ushered in a new and exciting era of cancer treatment for a variety of solid malignancies. Yet pancreatic ductal adenocarcinoma (PDAC) has failed to benefit from this paradigm shift, remaining notoriously refractory to targeted therapies. Chemotherapy is the cornerstone of management but can offer only modest survival benefits of a few months with 5-year survival rates rarely exceeding 3%. Despite these disappointing statistics, significant strides have been made towards understanding the complex biology of pancreatic cancer, with deep genomic sequencing identifying novel genetic aberrations and key signalling pathways. The PI3K-PDK1-AKT pathway has received great attention due to its prominence in carcinogenesis. However, efforts to target several components of this network have resulted in only a handful of drugs demonstrating any survival benefit in solid tumors; despite promising pre-clinical results. p-21 activated kinase 4 (PAK4) is a gene that is recurrently amplified or overexpressed in PDAC and both PAK4 and related family member PAK1, have been linked to aberrant RAS activity, a common feature in pancreatic cancer. As regulators of PI3K, PAKs have been highlighted as a potential prognostic marker and therapeutic target. In this review, we discuss the biology of pancreatic cancer and the close interaction between PAKs and the PI3K pathway. We also suggest proposals for future research that may see the development of effective targeted therapies that could finally improve outcomes for this disease.
Insights
Pancreatic cancer remains difficult to treat. This review explores the PI3K pathway and p-21 activated kinases (PAKs) as potential therapeutic targets to improve outcomes for pancreatic ductal adenocarcinoma (PDAC).
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Pancreatic ductal adenocarcinoma (PDAC) shows limited benefit from personalized therapies, with chemotherapy offering only modest survival improvements.
- Despite advances in understanding PDAC biology, targeted therapies have yielded limited success.
- The PI3K-PDK1-AKT pathway is crucial in carcinogenesis but challenging to target effectively.
Purpose of the Study:
- To review the biology of pancreatic cancer, focusing on the PI3K pathway.
- To explore the role of p-21 activated kinases (PAKs) in PDAC.
- To highlight PAKs as potential prognostic markers and therapeutic targets.
Main Methods:
- Review of existing literature on pancreatic cancer genetics and signaling pathways.
- Analysis of the interaction between PAKs and the PI3K pathway in PDAC.
- Discussion of pre-clinical findings and clinical outcomes of targeted therapies.
Main Results:
- PAKs (PAK4 and PAK1) are frequently amplified or overexpressed in PDAC.
- PAKs are linked to aberrant RAS activity, a hallmark of pancreatic cancer.
- PAKs regulate PI3K, suggesting their potential as therapeutic targets.
Conclusions:
- PAKs represent a promising therapeutic target for pancreatic cancer due to their role in the PI3K pathway.
- Further research into PAK-targeted therapies could improve outcomes for PDAC patients.
- Understanding the PAK-PI3K interaction is key to developing effective treatments.
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