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Distinct initiating events underpin the immune and metabolic heterogeneity of KRAS-mutant lung adenocarcinoma.

Sarah A Best ,
Sheryl Ding ,
Ariena Kersbergen ,
Xueyi Dong ,
Ji-Ying Song ,
Yi Xie ,
Boris Reljic ,
Kaiming Li ,
James E Vince ,
Vivek Rathi ,
Gavin M Wright ,
Matthew E Ritchie ,
Kate D Sutherland

Abstract

The KRAS oncoprotein, a critical driver in 33% of lung adenocarcinoma (LUAD), has remained an elusive clinical target due to its perceived undruggable nature. The identification of dependencies borne through common co-occurring mutations are sought to more effectively target KRAS-mutant lung cancer. Approximately 20% of KRAS-mutant LUAD carry loss-of-function mutations in KEAP1, a negative regulator of the antioxidant response transcription factor NFE2L2/NRF2. We demonstrate that Keap1-deficient KrasG12D lung tumors arise from a bronchiolar cell-of-origin, lacking pro-tumorigenic macrophages observed in tumors originating from alveolar cells. Keap1 loss activates the pentose phosphate pathway, inhibition of which, using 6-AN, abrogated tumor growth. These studies highlight alternative therapeutic approaches to specifically target this unique subset of KRAS-mutant LUAD cancers.

More about this publication

Nature communications

Volume 10
Issue nr. 1
Pages 4190
Publication date 13-09-2019

Full text links

Publisher website (DOI) 10.1038/s41467-019-12164-y
Europe PubMed Central 31519898
Pubmed 31519898

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