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Updated: Feb 27, 2026

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Identification and characterization of ErbB4 kinase inhibitors for effective breast cancer therapy
Ankita Sahu1,2, P K Patra1, Manoj Kumar Yadav1
1a Department of Biochemistry , Pt. J.N.M. Medical College , Raipur , India.
Abstract:
The overexpression of ErbB4 is associated with aggressive disease biology and reduced the survival of breast cancer patients. We have used ErbB4 receptor as a novel drug target to spearhead the rational drug design. The present study is divided into two parts. In the first part, we have exploited the hidden information inside ErbB4 kinase receptor both at sequence and structural level. PSI-BLAST algorithm is used to search similar sequences against ErbB4 kinase sequence. Top 15 sequences with high identity were selected for finding conserved and variable regions among sequences using multiple sequence alignment. In the second part, available 3 D structure of ErbB4 kinase is curated using loop modeling, and anomalies in the modeled structure is improved by energy minimization. The resultant structure is validated by analyzing dihedral angles by Ramachandran plot analysis. Furthermore, the potential binding sites were detected by using DoGSite and CASTp server. The similarity-search criterion is used for the preparation of our in-house database of drugs from DrugBank database. In total, 409 drugs yet to be tested against ErbB4 kinase is used for screening purpose. Virtual screening results in identification of 11 compounds with better binding affinity than lapatinib and canertinib. Study of protein-ligand interactions reveals information about amino acid residues; Lys726, Thr771, Met774, Cys778, Arg822, Thr835, Asp836 and Phe837 at the binding pocket. The physicochemical properties and bioactivity score calculation of selected compounds suggest them as biological active. This study presents a rich array that assist in expediting new drug discovery for breast cancer.
Insights
Overexpression of ErbB4 kinase is linked to aggressive breast cancer. This study identified 11 novel compounds with superior binding affinity to ErbB4, offering promising new drug candidates for breast cancer treatment.
Area of Science:
- Biochemistry and Molecular Biology
- Pharmacology and Drug Discovery
- Computational Biology
Background:
- ErbB4 receptor tyrosine kinase overexpression correlates with aggressive breast cancer and poor patient survival.
- Targeting ErbB4 represents a novel strategy for rational drug design in breast cancer therapy.
Purpose of the Study:
- To identify novel drug candidates targeting the ErbB4 kinase receptor for breast cancer treatment.
- To exploit sequence and structural information of ErbB4 for drug design.
Main Methods:
- Sequence and structural analysis of ErbB4 using PSI-BLAST and multiple sequence alignment.
- 3D structure curation, energy minimization, and validation using Ramachandran plot analysis.
- Virtual screening of 409 drugs against ErbB4 using DoGSite and CASTp for binding site identification.
Main Results:
- Identified 11 compounds with enhanced binding affinity to ErbB4 compared to existing drugs lapatinib and canertinib.
- Detailed protein-ligand interactions at the ErbB4 binding pocket, highlighting key amino acid residues.
- Selected compounds demonstrated favorable physicochemical properties and bioactivity scores, indicating potential therapeutic value.
Conclusions:
- The study successfully identified promising drug candidates for ErbB4-targeted breast cancer therapy.
- Computational methods provided valuable insights into ErbB4-ligand interactions, aiding rational drug design.
- These findings pave the way for expedited drug discovery and development for breast cancer patients.
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