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Published on: March 20, 2018
Molecular interaction studies on ellagic acid for its anticancer potential targeting pyruvate dehydrogenase kinase 3
Rashmi Dahiya1, Taj Mohammad1, Preeti Gupta1
1Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia Jamia Nagar New Delhi 110025 India mihassan@jmi.ac.in.
Abstract:
Pyruvate dehydrogenase kinase 3 (PDK3) plays a central role in the cancer metabolic switch through the reversible phosphorylation of pyruvate dehydrogenase complex thereby blocking the entry of pyruvate for its catabolism into the TCA cycle, and thus it is considered as an important drug target for various types of cancers. We have successfully expressed full length human PDK3 and investigated its interaction mechanism with dietary polyphenols in the search for potential inhibitors. Molecular docking analysis revealed that the selected compounds preferentially bind to the ATP-binding pocket of PDK3 and interact with functionally important residues. In silico observations were further complemented by experimental measurements of the fluorescence quenching of PDK3 and confirmed with the isothermal titration calorimetry measurements. Ellagic acid (EA) significantly binds and inhibits the kinase activity of PDK3. In vitro cytotoxicity and the anti-proliferative properties of EA were evaluated by MTT assay. Conformational dynamics of the EA-PDK3 complex during molecular dynamics simulation revealed that a stable complex was maintained by a significant number of hydrogen bonds throughout the 100 ns trajectories. In conclusion, EA may be considered as a promising molecule for PDK3 inhibition and could be exploited as a lead molecule against PDK3 associated diseases.
Insights
Ellagic acid (EA) shows promise as a PDK3 inhibitor, crucial for cancer metabolism. This study confirms EA
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Pyruvate dehydrogenase kinase 3 (PDK3) regulates cancer metabolism by inhibiting pyruvate entry into the TCA cycle.
- PDK3 is a significant drug target for various cancers due to its role in the metabolic switch.
Purpose of the Study:
- To investigate the interaction mechanism between human PDK3 and dietary polyphenols.
- To identify potential PDK3 inhibitors from natural compounds.
Main Methods:
- Molecular docking analysis to predict binding interactions.
- Fluorescence quenching and isothermal titration calorimetry to confirm binding.
- In vitro cytotoxicity assays (MTT) and anti-proliferative studies.
- Molecular dynamics simulations to analyze complex stability.
Main Results:
- Ellagic acid (EA) was identified as a potent inhibitor of PDK3.
- EA binds to the ATP-binding pocket of PDK3, interacting with key residues.
- EA demonstrated significant kinase inhibition, cytotoxicity, and anti-proliferative effects.
- Molecular dynamics simulations confirmed a stable EA-PDK3 complex.
Conclusions:
- Ellagic acid is a promising molecule for inhibiting PDK3.
- EA could serve as a lead compound for developing therapeutics against PDK3-associated diseases.

