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Structural Basis for Inhibition of Mutant EGFR with Lazertinib (YH25448)

  • David E. Heppner
  • , Florian Wittlinger
  • , Tyler S. Beyett
  • , Tatiana Shaurova
  • , Daniel A. Urul
  • , Brian Buckley
  • , Calvin D. Pham
  • , Ilse K. Schaeffner
  • , Bo Yang
  • , Blessing C. Ogboo
  • , Earl W. May
  • , Erik M. Schaefer
  • , Michael J. Eck
  • , Stefan A. Laufer
  • , Pamela A. Hershberger
  • University of Tübingen
  • Dana-Farber Cancer Institute
  • Harvard University
  • Roswell Park Cancer Institute
  • AssayQuant Technologies Inc.
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

51 Scopus citations

Abstract

Lazertinib (YH25448) is a novel third-generation tyrosine kinase inhibitor (TKI) developed as a treatment for EGFR mutant non-small cell lung cancer. To better understand the nature of lazertinib inhibition, we determined crystal structures of lazertinib in complex with both WT and mutant EGFR and compared its binding mode to that of structurally related EGFR TKIs. We observe that lazertinib binds EGFR with a distinctive pyrazole moiety enabling hydrogen bonds and van der Waals interactions facilitated through hydrophilic amine and hydrophobic phenyl groups, respectively. Biochemical assays and cell studies confirm that lazertinib effectively targets EGFR(L858R/T790M) and to a lesser extent HER2. The molecular basis for lazertinib inhibition of EGFR reported here highlights previously unexplored binding interactions leading to improved medicinal chemistry properties compared to clinically approved osimertinib (AZD9291) and offers novel strategies for structure-guided design of tyrosine kinase inhibitors.

Original languageEnglish
Pages (from-to)1856-1863
Number of pages8
JournalACS Medicinal Chemistry Letters
Volume13
Issue number12
DOIs
StatePublished - Dec 8 2022

Keywords

  • Lung cancer
  • epidermal growth factor receptor
  • kinase inhibitor
  • mutant
  • structural biology
  • targeted therapy

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