Discovery of BBO-8520, a First-In-Class Direct and Covalent Dual Inhibitor of GTP-Bound (ON) and GDP-Bound (OFF) KRASG12C

Anna E. Maciag(Leidos (United States)), James P. Stice(BridgeBio (United States)), Bin Wang(BridgeBio (United States)), Alok K. Sharma(Leidos (United States)), Albert H. Chan(Leidos (United States)), Kenneth Lin(BridgeBio (United States)), Devansh Singh(BridgeBio (United States)), Marcin Dyba(Leidos (United States)), Yue Yang(Lawrence Livermore National Laboratory), Saman Setoodeh(BridgeBio (United States)), Bryan D. Smith(Leidos (United States)), Jin Hyun Ju(BridgeBio (United States)), Stevan Jeknic(BridgeBio (United States)), Dana Rabara(Leidos (United States)), Zuhui Zhang(BridgeBio (United States)), Erik K. Larsen(Leidos (United States)), Dominic Esposito(Leidos (United States)), John-Paul Denson(Leidos (United States)), Michela Ranieri(NYU Langone Health), Mary Meynardie(NYU Langone Health), Sadaf Mehdizadeh(BridgeBio (United States)), Patrick Alexander(Leidos (United States)), Maria Abreu Blanco(Leidos (United States)), David M. Turner(Leidos (United States)), Rui Xu(BridgeBio (United States)), Felice C. Lightstone(Lawrence Livermore National Laboratory), Kwok‐Kin Wong(NYU Langone Health), Andrew G. Stephen(Leidos (United States)), Keshi Wang(BridgeBio (United States)), Dhirendra K. Simanshu(Leidos (United States)), Kerstin W. Sinkevicius(BridgeBio (United States)), Dwight V. Nissley(Leidos (United States)), Eli Wallace(BridgeBio (United States)), Frank McCormick(Leidos (United States)), Pedro J. Beltran(BridgeBio (United States))
Cancer Discovery
December 6, 2024
Cited by 43Open Access
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Abstract

Approved inhibitors of KRASG12C prevent oncogenic activation by sequestering the inactive, GDP-bound (OFF) form rather than directly binding and inhibiting the active, GTP-bound (ON) form. This approach provides no direct target coverage of the active protein. Expectedly, adaptive resistance to KRASG12C (OFF)-only inhibitors is observed in association with increased expression and activity of KRASG12C(ON). To provide optimal KRASG12C target coverage, we have developed BBO-8520, a first-in-class, direct dual inhibitor of KRASG12C(ON) and (OFF) forms. BBO-8520 binds in the Switch-II/Helix3 pocket, covalently modifies the target cysteine, and disables effector binding to KRASG12C(ON). BBO-8520 exhibits potent signaling inhibition in growth factor-activated states, in which current (OFF)-only inhibitors demonstrate little measurable activity. In vivo, BBO-8520 demonstrates rapid target engagement and inhibition of signaling, resulting in durable tumor regression in multiple models, including those resistant to KRASG12C(OFF)-only inhibitors. BBO-8520 is in phase 1 clinical trials in patients with KRASG12C non-small cell lung cancer. Significance: BBO-8520 is a first-in-class direct, small molecule covalent dual inhibitor that engages KRASG12C in the active (ON) and inactive (OFF) conformations. BBO-8520 represents a novel mechanism of action that allows for optimal target coverage and delays the emergence of adaptive resistance seen with (OFF)-only inhibitors in the clinic. See related commentary by Zhou and Westover, p. 455.


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