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Conformational flexibility of the ErbB2 ectodomain and trastuzumab antibody complex as revealed by molecular dynamics
Juan Felipe Franco-Gonzalez1, Victor L Cruz, Javier Ramos
1BIOPHYM, Macromolecular Physics Department, Instituto de Estructura de la Materia, CSIC, Serrano 113 bis, 28006 Madrid, Spain. felipe.franco@iem.cfmac.csic.es
Abstract:
Human epidermal growth factor receptor 2 (ErbB2) is a transmembrane oncoprotein that is over expressed in breast cancer. A successful therapeutic treatment is a monoclonal antibody called trastuzumab which interacts with the ErbB2 extracellular domain (ErbB2-ECD). A better understanding of the detailed structure of the receptor-antibody interaction is indeed of prime interest for the design of more effective anticancer therapies. In order to discuss the flexibility of the complex ErbB2-ECD/trastuzumab, we present, in this study, a multi-nanosecond molecular dynamics simulation (MD) together with an analysis of fluctuations, through a principal component analysis (PCA) of this system. Previous to this step and in order to validate the simulations, we have performed a detailed analysis of the variable antibody domain interactions with the extracellular domain IV of ErbB2. This structure has been statically elucidated by x-ray studies. Indeed, the simulation results are in excellent agreement with the available experimental information during the full trajectory. The PCA shows eigenvector fluctuations resulting in a hinge motion in which domain II and C(H) domains approach each other. This move is likely stabilized by the formation of H-bonds and salt bridge interactions between residues of the dimerization arm in the domain II and trastuzumab residues located in the C(H) domain. Finally, we discuss the flexibility of the MD/PCA model in relation with the static x-ray structure. A movement of the antibody toward the dimerization domain of the ErbB2 receptor is reported for the first time. This finding could have important consequences on the biological action of the monoclonal antibody.
Insights
This study used molecular dynamics simulations to reveal a novel antibody movement in the ErbB2-trastuzumab complex. This finding offers insights into improving targeted breast cancer therapies by understanding receptor-antibody dynamics.
Area of Science:
- Biophysics
- Structural Biology
- Computational Chemistry
Background:
- Human epidermal growth factor receptor 2 (ErbB2) is a key oncoprotein overexpressed in breast cancer.
- Trastuzumab, a monoclonal antibody, targets the ErbB2 extracellular domain (ErbB2-ECD) as a therapeutic strategy.
Purpose of the Study:
- To investigate the flexibility and dynamics of the ErbB2-ECD/trastuzumab complex.
- To provide a detailed structural understanding of receptor-antibody interactions for enhanced cancer therapy design.
Main Methods:
- Multi-nanosecond molecular dynamics (MD) simulations of the ErbB2-ECD/trastuzumab system.
- Principal component analysis (PCA) to analyze system fluctuations and identify key motions.
- Validation of simulation results against available experimental x-ray data.
Main Results:
- MD simulations showed excellent agreement with experimental data.
- PCA revealed a hinge motion involving ErbB2 domain II and trastuzumab C(H) domains, stabilized by H-bonds and salt bridges.
- Observed a novel antibody movement towards the ErbB2 dimerization domain.
Conclusions:
- The study elucidates the dynamic flexibility of the ErbB2-trastuzumab complex.
- The newly identified antibody movement may impact trastuzumab's biological activity and offers potential for new therapeutic strategies.
