| Literature DB >> 31694351 |
Pedro R Magalhães1, Miguel Machuqueiro1, José G Almeida2, André Melo3, M Natália D S Cordeiro3, Sandra Cabo Verde4, Zeynep H Gümüş5, Irina S Moreira6, João D G Correia4, Rita Melo4,6.
Abstract
Human epidermal growth factor 2 (HER2) is a ligand-free tyrosine kinase receptor of the HER family that is overexpressed in some of the most aggressive tumours. Although it is known that HER2 dimerization involves a specific region of its extracellular domain, the so-called "dimerization arm", the mechanism of dimerization inhibition remains uncertain. However, uncovering how antibody interactions lead to inhibition of HER2 dimerization is of key importance in understanding its role in tumour progression and therapy. Herein, we employed several computational modelling techniques for a molecular-level understanding of the interactions between HER and specific anti-HER2 antibodies, namely an antigen-binding (Fab) fragment (F0178) and a single-chain variable fragment from Trastuzumab (scFv). Specifically, we investigated the effects of antibody-HER2 interactions on the key residues of "dimerization arm" from molecular dynamics (MD) simulations of unbound HER (in a total of 1 µs), as well as ScFv:HER2 and F0178:HER2 complexes (for a total of 2.5 µs). A deep surface analysis of HER receptor revealed that the binding of specific anti-HER2 antibodies induced conformational changes both in the interfacial residues, which was expected, and in the ECDII (extracellular domain), in particular at the "dimerization arm", which is critical in establishing protein-protein interface (PPI) interactions. Our results support and advance the knowledge on the already described trastuzumab effect on blocking HER2 dimerization through synergistic inhibition and/or steric hindrance. Furthermore, our approach offers a new strategy for fine-tuning target activity through allosteric ligands.Entities:
Keywords: breast cancer; dimerization inhibition; human epidermal growth factor 2 (HER2); molecular dynamics; receptor–antibody interactions
Mesh:
Substances:
Year: 2019 PMID: 31694351 PMCID: PMC6920943 DOI: 10.3390/biom9110706
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Figure 1Depiction of the human epidermal growth factor 2 (HER2) receptor with its four different extracellular domain (ECD) regions mapped from PDBID:1N8Z [13] (A). The regions where both partners are located at the complex crystal structure are also shown (B). The F0178:HER2 structure was obtained from PDBID:3WSQ [14], whereas the ScFv:HER2 structure was obtained from PDBID: 1N8Z [13]. The secondary structure of the receptor and its partners is depicted as a cartoon, and the surface is shown as a contour.
Figure 2Root mean square deviation (RMSD) plots of the five molecular dynamics (MD) simulation runs (R1–R5) for HER2 (A), F0178:HER2 (B), and ScFv:HER2 (C). Full lines depict calculations made with all four ECD regions, whereas dotted lines do not include ECDIV. The small inset in (B) shows the full length of the longer production run (R5).
Figure 3Snapshots of the ScFv:HER2 system in open (A), intermediate (B), and closed (C) conformations. The secondary structure of the receptor and its partners is depicted as a cartoon, and the surface is shown as a contour.
Figure 4Cross-correlation analysis. (A) unbound HER2; (B) HER2 at F0178:HER2, and (C) HER2 at scFv:HER2.
Figure 5Principal components analysis (PCA) clustering results of the MD simulation trajectories of the complexes. i) Principal components (PC) 1 and 2; ii) PC2 and PC3; iii) PC3 and PC1; iv) percentage of variance explained by the first 10 PC: (A) F0178:HER2, (C) scFv:HER2. Contribution of each residue to the first two principal components: (B) F0178:HER2, (D) scFv:HER2.
Figure 6Residues with significant differences in solvent-accessible surface area (SASA) due to the presence of a partner, coloured by their respective ECD in F0178:HER2 (A) and ScFv:HER2 (B).
Figure 7Residues with the largest difference in SASA due to allosteric effects, coloured by their respective ECD in F0178:HER2 (A) and ScFv:HER2 (B).