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Updated: May 1, 2026

Deciphering the Structural Effects of Activating EGFR Somatic Mutations with Molecular Dynamics Simulation
Published on: May 20, 2020
In vitro and in vivo characterization of irreversible mutant-selective EGFR inhibitors that are wild-type sparing
Robert Tjin Tham Sjin1, Kwangho Lee2, Annette O Walter2
1Authors' Affiliations: Celgene Avilomics Research, Bedford, Massachusetts; and Clovis Oncology Inc., San Francisco, California rtjin@celgene.com.
Abstract:
Patients with non-small cell lung carcinoma (NSCLC) with activating mutations in epidermal growth factor receptor (EGFR) initially respond well to the EGFR inhibitors erlotinib and gefitinib. However, all patients relapse because of the emergence of drug-resistant mutations, with T790M mutations accounting for approximately 60% of all resistance. Second-generation irreversible EGFR inhibitors are effective against T790M mutations in vitro, but retain affinity for wild-type EGFR (EGFR(WT)). These inhibitors have not provided compelling clinical benefit in T790M-positive patients, apparently because of dose-limiting toxicities associated with inhibition of EGFR(WT). Thus, there is an urgent clinical need for therapeutics that overcome T790M drug resistance while sparing EGFR(WT). Here, we describe a lead optimization program that led to the discovery of four potent irreversible 2,4-diaminopyrimidine compounds that are EGFR mutant (EGFR(mut)) selective and have been designed to have low affinity for EGFR(WT). Pharmacokinetic and pharmacodynamic studies in H1975 tumor-bearing mice showed that exposure was dose proportional resulting in dose-dependent EGFR modulation. Importantly, evaluation of normal lung tissue from the same animals showed no inhibition of EGFR(WT). Of all the compounds tested, compound 3 displayed the best efficacy in EGFR(L858R/T790M)-driven tumors. Compound 3, now renamed CO-1686, is currently in a phase I/II clinical trial in patients with EGFR(mut)-advanced NSCLC that have received prior EGFR-directed therapy.
Insights
New EGFR inhibitors overcome drug resistance in non-small cell lung cancer. These selective compounds target T790M mutations while sparing wild-type EGFR, offering a promising new treatment avenue.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Non-small cell lung cancer (NSCLC) with EGFR mutations initially responds to EGFR inhibitors.
- Acquired resistance, often due to T790M mutations, limits treatment efficacy.
- Existing second-generation inhibitors show toxicity due to wild-type EGFR inhibition.
Purpose of the Study:
- To discover novel therapeutics overcoming T790M-mediated resistance in NSCLC.
- To develop EGFR inhibitors selective for mutant forms (EGFR(mut)) while sparing wild-type EGFR (EGFR(WT)).
Main Methods:
- Lead optimization program to identify selective 2,4-diaminopyrimidine compounds.
- Pharmacokinetic and pharmacodynamic studies in H1975 tumor-bearing mice.
- Evaluation of EGFR inhibition in normal lung tissue and tumor efficacy.
Main Results:
- Discovery of four potent, irreversible, EGFR(mut) selective compounds.
- Dose-proportional exposure and EGFR modulation observed in vivo.
- Compound 3 (CO-1686) demonstrated significant efficacy in EGFR(L858R/T790M) tumors with no EGFR(WT) inhibition in normal lung tissue.
Conclusions:
- CO-1686 is a potent and selective EGFR inhibitor effective against T790M resistance.
- The compound spares wild-type EGFR, potentially reducing dose-limiting toxicities.
- CO-1686 is advancing to Phase I/II clinical trials for EGFR-mutated NSCLC patients.
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