MPS1 inhibition primes immunogenicity of KRAS-LKB1 mutant lung cancer

MPS1抑制可增强KRAS-LKB1突变型肺癌的免疫原性

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作者:Shunsuke Kitajima,Tetsuo Tani,Benjamin F Springer,Marco Campisi,Tatsuya Osaki,Koji Haratani,Minyue Chen,Erik H Knelson,Navin R Mahadevan,Jessica Ritter,Ryohei Yoshida,Jens Köhler,Atsuko Ogino,Ryu-Suke Nozawa,Shriram K Sundararaman,Tran C Thai,Mizuki Homme,Brandon Piel,Sophie Kivlehan,Bonje N Obua,Connor Purcell,Mamiko Yajima,Thanh U Barbie,Patrick H Lizotte,Pasi A Jänne,Cloud P Paweletz,Prafulla C Gokhale,David A Barbie

Abstract

KRAS-LKB1 (KL) mutant lung cancers silence STING owing to intrinsic mitochondrial dysfunction, resulting in T cell exclusion and resistance to programmed cell death (ligand) 1 (PD-[L]1) blockade. Here we discover that KL cells also minimize intracellular accumulation of 2'3'-cyclic GMP-AMP (2'3'-cGAMP) to further avoid downstream STING and STAT1 activation. An unbiased screen to co-opt this vulnerability reveals that transient MPS1 inhibition (MPS1i) potently re-engages this pathway in KL cells via micronuclei generation. This effect is markedly amplified by epigenetic de-repression of STING and only requires pulse MPS1i treatment, creating a therapeutic window compared with non-dividing cells. A single course of decitabine treatment followed by pulse MPS1i therapy restores T cell infiltration in vivo, enhances anti-PD-1 efficacy, and results in a durable response without evidence of significant toxicity.

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