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Published on: August 25, 2021
Analysis of regulatory mechanism after ErbB4 gene mutation based on local modeling methodology
1The Key Laboratory of Biomedical Information Engineering of Ministry of Education, Institute of Biomedical Analytical Technology and Instrumentation, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an, China.
Abstract:
ErbB4 is an oncogene belonging to the epidermal growth factor receptor family and contributes to the occurrence and development of multiple cancers, such as gastric, breast, and colorectal cancers. Therefore, studies of the regulation of ErbB4 in cancerigenic pathway will advance molecular targeted therapy. Advanced bioinformatic analysis softwares, such as ExPASy, Predictprotei, QUARK, and I-TASSER, were used to analyze the regulatory mechanism after ErbB4 gene mutation in terms of amino acid sequence, primary, secondary, and tertiary structure of the protein and upstream-downstream receptor/ligands. Mutation of the 19th and 113th amino acids at the carboxyl terminus of ErbB4 protein did not affect its biological nature, but its secondary structure changed and protein binding sites were near 2 mutational sites; moreover, after mutation introduction, additional binding sites were observed. Tertiary structure modeling indicated that local structure of ErbB4 was changed from an α helical conformation into a β chain folding structure; the α helical conformation is the functional site of protein, while active sites are typically near junctions between helical regions, thus the helical structures are easily destroyed and change into folding structures or other structures after stretching. Mutable sites of ErbB4 is exact binding sites where dimer formed with other epidermal growth factor family proteins; mutation enabled the ErbB4 receptor to bind to neuregulin 1 ligand without dimer formation, disrupting the signal transduction pathway and affecting ErbB4 function.
Insights
Mutations in the ErbB4 oncogene alter its structure, affecting cancer pathways. This discovery could lead to new molecular targeted therapies for various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Bioinformatics
Background:
- ErbB4, an oncogene in the epidermal growth factor receptor family, drives multiple cancers including gastric, breast, and colorectal.
- Understanding ErbB4 regulation in cancer is crucial for advancing molecular targeted therapy.
Purpose of the Study:
- To investigate the regulatory mechanisms of ErbB4 following gene mutation.
- To analyze the impact of ErbB4 mutations on protein structure and function.
Main Methods:
- Utilized advanced bioinformatics software (ExPASy, Predictprotei, QUARK, I-TASSER) for analysis.
- Examined amino acid sequence, protein structure (primary, secondary, tertiary), and receptor/ligand interactions.
- Modeled tertiary structure changes post-mutation.
Main Results:
- Mutations at the 19th and 113th amino acids did not alter biological nature but changed secondary structure and introduced new binding sites.
- Tertiary structure modeling revealed a shift from alpha-helical to beta-chain folding at functional sites.
- Mutations at binding sites enabled ErbB4 to bind neuregulin 1 without dimer formation, disrupting signaling.
Conclusions:
- ErbB4 mutations alter protein structure and binding capabilities, impacting its function in cancer pathways.
- These findings provide insights into ErbB4's role in oncogenesis and potential therapeutic strategies.
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