Ligand and structure based hierarchical virtual screening cascade for finding novel epidermal growth factor receptor inhibitors

Author:

Huo Donghui12,Sun Zhiqi1,Wang Maolin34,Yan Aixia1ORCID

Affiliation:

1. State Key Laboratory of Chemical Resource Engineering, College of Life Science and Technology Beijing University of Chemical Technology Beijing China

2. Dalian (Fushun) Research Institute of Petroleum and Petrochemicals China Petroleum & Chemical Corporation (SINOPEC) Dalian China

3. Clinical Research Center, The First Affiliated Hospital of Shantou University Medical College Shantou Guangdong China

4. Department of Physiology, School of Basic Medical Sciences Shenzhen University Health Sciences Center Shenzhen Guangdong China

Abstract

AbstractThe epidermal growth factor receptor (EGFR) tyrosine kinase plays an important role in tumor formation and growth by mediating cell growth and other physiological processes. Therefore, EGFR is a promising target for the treatment of cancer. In this work, we combined ligand‐based and structure‐based virtual screening methods to identify novel EGFR inhibitors from a library of more than 103 thousand compounds. We first obtained hundreds of compounds with similar physiochemical properties through 3D molecular shape and electrostatic similarity screening with potent inhibitors AEE788 and Afatinib as queries. Next, we identified compounds with strong binding affinities to the EGFR pocket through molecular docking, which makes good use of the structure information of the receptor. After molecular scaffold analysis, our bioassay confirmed 13 compounds with EGFR inhibitory activity and three compounds had IC50 values below 1000 nM. In addition, we collected 5371 EGFR inhibitors from online databases, and clustered them into 7 groups by K‐means method using their ECFP4 fingerprints as input. Each cluster had typical molecular fragments and corresponding activity characteristics, which could guide the design of EGFR inhibitors, and we concluded that the fragments from some of the hits are indicated in the highly active scaffolds.

Publisher

Wiley

Subject

Molecular Medicine,Biochemistry,Drug Discovery,Pharmacology,Organic Chemistry

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