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Published on: November 19, 2019
p38α Mitogen-Activated Protein Kinase Is a Druggable Target in Pancreatic Adenocarcinoma
Ling Yang1, Xiaoting Sun2, Ying Ye3
1Department of Cellular and Genetic Medicine, School of Basic Medical Sciences, Fudan University, Shanghai, China.
Abstract:
p38 mitogen-activated protein kinases are signaling molecules with major involvement in cancer. A detailed mechanistic understanding of how p38 MAPK family members function is urgently warranted for cancer targeted therapy. The conformational dynamics of the most common member of p38 MAPK family, p38α, are crucial for its function but poorly understood. Here we found that, unlike in other cancer types, p38α is significantly activated in pancreatic adenocarcinoma samples, suggesting its potential for anti-pancreatic cancer therapy. Using a state of the art supercomputer, Anton, long-timescale (39 μs) unbiased molecular dynamics simulations of p38α show that apo p38α has high structural flexibility in six regions, and reveal potential catalysis mechanism involving a "butterfly" motion. Moreover, in vitro studies show the low-selectivity of the current p38α inhibitors in both human and mouse pancreatic cancer cell lines, while computational solvent mapping identified 17 novel pockets for drug design. Taken together, our study reveals the conformational dynamics and potentially druggable pockets of p38α, which may potentiate p38α-targeting drug development and benefit pancreatic cancer patients.
Insights
p38 mitogen-activated protein kinase alpha (p38α) is activated in pancreatic cancer. Understanding its dynamics and flexible regions offers new targets for developing more selective anti-cancer therapies.
Area of Science:
- Molecular biology
- Biochemistry
- Cancer research
Background:
- p38 mitogen-activated protein kinases (MAPKs) are key signaling molecules in cancer.
- Understanding p38 MAPK function is crucial for targeted cancer therapy.
- p38α, a prominent p38 MAPK member, has poorly understood conformational dynamics.
Purpose of the Study:
- Investigate the role of p38α in pancreatic adenocarcinoma.
- Elucidate the conformational dynamics of p38α.
- Identify novel drug targets for pancreatic cancer therapy.
Main Methods:
- Long-timescale molecular dynamics simulations (39 μs) on the Anton supercomputer.
- In vitro studies using human and mouse pancreatic cancer cell lines.
- Computational solvent mapping for drug design.
Main Results:
- p38α is significantly activated in pancreatic adenocarcinoma.
- Apo p38α exhibits high structural flexibility in six distinct regions.
- A potential catalysis mechanism involving "butterfly" motion was identified.
- Current p38α inhibitors show low selectivity in pancreatic cancer cells.
- 17 novel druggable pockets in p38α were identified.
Conclusions:
- The study reveals critical conformational dynamics of p38α.
- Identified flexible regions and novel pockets offer potential for p38α-targeted drug development.
- Findings may lead to improved therapies for pancreatic cancer patients.
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