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Updated: Sep 18, 2025

Deciphering the Structural Effects of Activating EGFR Somatic Mutations with Molecular Dynamics Simulation
Published on: May 20, 2020
Molecular dynamics simulations reveal a strong binding capacity of colossolactone H to the EGFR inactive conformation
Duc Toan Truong1,2, Kiet Ho3, Chinh Tam Thai4
1Laboratory for Chemical Computation and Modeling, Institute for Computational Science and Artificial Intelligence, Van Lang University, Ho Chi Minh City, Vietnam. toan.truongduc@vlu.edu.vn.
Abstract:
The major side effects of in-use drugs, such as gefitinib, erlotinib and osimetinib, have led to inherent limitations and considerable concerns regarding the use of tyrosine kinase inhibitors (TKIs) in cancer treatment. Natural compounds can effectively inhibit the expression of epidermal growth factor receptor (EGFR) tyrosine kinase protein; therefore, they are considered not only a functional product but also a substitute in cancer therapy. Based on the experimental findings of the bioactivities of natural compounds extracted from Ganoderma lucidum belonging to the family Ganodermataceae, which are commonly known as lingzhi and have been used since ancient times in Asian traditional medicine, we performed a theoretical study on the anti-tumor abilities of these colossolactone derivatives. Our work aims to understand the molecular interactions between a lactone compound and an EGFR intracellular protein, a common target in the development of TKI cancer drugs. A series of 16 colossolactone derivatives were placed in either the ATP-competition region or the allosteric active and inactive sites to explore their binding mechanism and rank their binding affinities. The latter was determined using steered molecular dynamics simulations and the umbrella sampling method. Of the 16 natural derivatives, colossolactone H was found to bind strongly to the allosteric pocket of EGFR-TKI and did not compete with the first-generation TKIs, which prefer to interact with the ATP region of the EGFR active state. The binding affinity of this lactone was 16 kcal mol-1. Our calculated results offer a rational explanation for previous experimental (in vivo) tests and promote the use of colossolactone H as a natural compound, providing an efficient synergistic drug combination for various cancer treatments.
Insights
Natural compounds from Ganoderma lucidum show potential as cancer therapies. Colossolactone H effectively binds to EGFR, offering a synergistic alternative to traditional tyrosine kinase inhibitors (TKIs).
Area of Science:
- Biochemistry and Molecular Biology
- Pharmacology
- Natural Product Chemistry
Background:
- Tyrosine kinase inhibitors (TKIs) like gefitinib, erlotinib, and osimertinib face limitations due to side effects.
- Natural compounds offer a promising avenue for cancer therapy by inhibiting epidermal growth factor receptor (EGFR) tyrosine kinase.
- Ganoderma lucidum (lingzhi) has a long history in traditional medicine and contains bioactive compounds.
Purpose of the Study:
- To investigate the anti-tumor potential of Ganoderma lucidum-derived colossolactone derivatives.
- To understand the molecular interactions between colossolactone derivatives and the EGFR protein.
- To identify novel EGFR inhibitors that can overcome TKI limitations.
Main Methods:
- Theoretical study involving molecular modeling and simulations.
- Placement of 16 colossolactone derivatives in EGFR binding sites (ATP-competition region, allosteric sites).
- Steered molecular dynamics simulations and umbrella sampling to determine binding affinities.
Main Results:
- Colossolactone H demonstrated strong binding to the allosteric pocket of EGFR-TKI.
- Colossolactone H does not compete with first-generation TKIs targeting the ATP region.
- Calculated binding affinity for colossolactone H was 16 kcal mol⁻¹.
Conclusions:
- Colossolactone H is a potent natural compound with potential as a synergistic agent in cancer treatment.
- The findings provide a molecular basis for previous in vivo experimental results.
- Colossolactone H represents a promising alternative or adjunct therapy to existing EGFR-TKIs.
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