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The Epidermal Growth Factor Receptor (EGFR) with the Δ746–750 mutation is a constitutively active mutant form of the receptor tyrosine kinase, characterized by an in-frame deletion of five amino acids (E746 through A750) in exon 19 [2, 4]. This mutation is the most common activating alteration in the EGFR gene, occurring in approximately 45-50% of EGFR-mutant non-small cell lung cancers (NSCLC) [2, 6]. The deletion causes a structural shift in the kinase domain's ATP-binding pocket, leading to ligand-independent activation of downstream signaling pathways such as RAS/MAPK, PI3K/Akt, and JAK/STAT [1, 11, 14]. These pathways drive critical oncogenic processes, including uncontrolled cell proliferation, survival, and angiogenesis [1, 13]. As a therapeutic target, EGFR Δ746–750 is highly sensitive to tyrosine kinase inhibitors (TKIs), such as gefitinib, erlotinib, and osimertinib, which are the standard of care for patients harboring this mutation [3, 7, 12]. However, clinical management is often challenged by the development of acquired resistance, most notably the T790M "gatekeeper" mutation, which occurs in about 50-60% of patients treated with first-generation TKIs [8, 15]. Third-generation TKIs like osimertinib have been specifically designed to target both the primary activating mutation and the T790M resistance mutation [8, 19].
Inhibition of the epidermal growth factor receptor tyrosine kinase activity by competing with ATP (reversible inhibitors) or forming covalent bonds with the Cys797 residue (irreversible inhibitors) in the kinase domain [7, 8, 12].
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