Allosteric SHP2 Inhibitor, IACS-13909, Overcomes EGFR-Dependent and EGFR-Independent Resistance Mechanisms toward Osimertinib

奥西默替尼 癌症研究 表皮生长因子受体抑制剂 MAPK/ERK通路 变构调节 受体酪氨酸激酶 激酶 表皮生长因子受体 酪氨酸激酶 信号转导 癌症 生物 医学 受体 细胞生物学 埃罗替尼 内科学
作者
Yuting Sun,Brooke A. Meyers,Barbara Czakó,Paul G. Leonard,Faika Mseeh,Angela L. Harris,Qi Wu,Sarah B. Johnson,Connor A. Parker,Jason B. Cross,Maria Emilia Di Francesco,Benjamin J. Bivona,Christopher A. Bristow,Jason P. Burke,Caroline C. Carrillo,Christopher L. Carroll,Qing Chang,Ningping Feng,Guang Gao,Sonal Gera
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:80 (21): 4840-4853 被引量:107
标识
DOI:10.1158/0008-5472.can-20-1634
摘要

Abstract Src homology 2 domain-containing phosphatase (SHP2) is a phosphatase that mediates signaling downstream of multiple receptor tyrosine kinases (RTK) and is required for full activation of the MAPK pathway. SHP2 inhibition has demonstrated tumor growth inhibition in RTK-activated cancers in preclinical studies. The long-term effectiveness of tyrosine kinase inhibitors such as the EGFR inhibitor (EGFRi), osimertinib, in non–small cell lung cancer (NSCLC) is limited by acquired resistance. Multiple clinically identified mechanisms underlie resistance to osimertinib, including mutations in EGFR that preclude drug binding as well as EGFR-independent activation of the MAPK pathway through alternate RTK (RTK-bypass). It has also been noted that frequently a tumor from a single patient harbors more than one resistance mechanism, and the plasticity between multiple resistance mechanisms could restrict the effectiveness of therapies targeting a single node of the oncogenic signaling network. Here, we report the discovery of IACS-13909, a specific and potent allosteric inhibitor of SHP2, that suppresses signaling through the MAPK pathway. IACS-13909 potently impeded proliferation of tumors harboring a broad spectrum of activated RTKs as the oncogenic driver. In EGFR-mutant osimertinib-resistant NSCLC models with EGFR-dependent and EGFR-independent resistance mechanisms, IACS-13909, administered as a single agent or in combination with osimertinib, potently suppressed tumor cell proliferation in vitro and caused tumor regression in vivo. Together, our findings provide preclinical evidence for using a SHP2 inhibitor as a therapeutic strategy in acquired EGFRi-resistant NSCLC. Significance: These findings highlight the discovery of IACS-13909 as a potent, selective inhibitor of SHP2 with drug-like properties, and targeting SHP2 may serve as a therapeutic strategy to overcome tumor resistance to osimertinib.
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