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Data from The KRAS<sup>G12C</sup> Inhibitor MRTX849 Provides Insight toward Therapeutic Susceptibility of KRAS-Mutant Cancers in Mouse Models and Patients

克拉斯 突变体 癌症研究 突变 化学 药理学 医学 生物化学 基因
作者
Jill Hallin,Lars D. Engstrom,Lauren Hargis,Andrew Calinisan,Ruth Aranda,David M. Briere,Niranjan Sudhakar,Vickie Bowcut,Brian R. Baer,Joshua A. Ballard,Michael Burkard,Jay B. Fell,John P. Fischer,Guy Vigers,Jenny Y. Xue,Sole Gatto,Julio Fernandez-Banet,Adam Pavlı́ček,Karen Velastagui,Richard C. Chao
标识
DOI:10.1158/2159-8290.c.6547879
摘要

<div>Abstract<p>Despite decades of research, efforts to directly target KRAS have been challenging. MRTX849 was identified as a potent, selective, and covalent KRAS<sup>G12C</sup> inhibitor that exhibits favorable drug-like properties, selectively modifies mutant cysteine 12 in GDP-bound KRAS<sup>G12C</sup>, and inhibits KRAS-dependent signaling. MRTX849 demonstrated pronounced tumor regression in 17 of 26 (65%) KRAS<sup>G12C</sup>-positive cell line– and patient-derived xenograft models from multiple tumor types, and objective responses have been observed in patients with KRAS<sup>G12C</sup>-positive lung and colon adenocarcinomas. Comprehensive pharmacodynamic and pharmacogenomic profiling in sensitive and partially resistant nonclinical models identified mechanisms implicated in limiting antitumor activity including KRAS nucleotide cycling and pathways that induce feedback reactivation and/or bypass KRAS dependence. These factors included activation of receptor tyrosine kinases (RTK), bypass of KRAS dependence, and genetic dysregulation of cell cycle. Combinations of MRTX849 with agents that target RTKs, mTOR, or cell cycle demonstrated enhanced response and marked tumor regression in several tumor models, including MRTX849-refractory models.</p>Significance:<p>The discovery of MRTX849 provides a long-awaited opportunity to selectively target KRAS<sup>G12C</sup> in patients. The in-depth characterization of MRTX849 activity, elucidation of response and resistance mechanisms, and identification of effective combinations provide new insight toward KRAS dependence and the rational development of this class of agents.</p><p><i>See related commentary by Klempner and Hata, p. 20</i>.</p><p><i>This article is highlighted in the In This Issue feature, p. 1</i></p></div>
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