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Wild-type KRAS activation drives evasion of interferon-mediated immunity and resistance to immunotherapy in hepatocellular carcinoma

Nature Communications. 2025-11; 
Martina Mang Leng Lei, Carmen Oi Ning Leung, Rainbow Wing Hei Leung, Xue Qian Wu, Katherine Po Sin Chung, Catherine Yu Jia Gu, Mandy Sze Man Chan, Wing Ki Chau, Quan Hua Mu, Kai Yu Ng, Man Tong, Jing Ping Yun, Jia Ming Nickolas Teo, Guang Sheng Ling, Patrick Pak Chun Wong, Stephen Lam Chan, Zhe Wen Xiong, Alfred Sze Lok Cheng, Jin Ding, Stephanie Ma, Terence Kin Wah Lee Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University
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Mutagenesis Services Mouse Kras (NM_021284) was cloned into pDONR-221 (Hitrobio Biotechnology) and transferred to pT3-EF1A vector via Gateway LR Clonase (Thermo Fisher Scientific). pT3-EF1A-KrasS17N was generated by site-directed mutagenesis (Ser17→Asn; AGC → AAC) (GenScript Biotech). For in vivo MEK1/2 knockout, the px330-sgTp53-sgMap2k1-sgMap2k2 (9373 bp) was composed by Genscript Biotech. Get A Quote

Abstract

Increasing evidence indicates that activation of oncogenic pathways contributes to an unfavourable tumour immune microenvironment (TIME), ultimately resulting in resistance to immunotherapy. Here, we aim to identify a critical oncogenic pathway involved in an antigen-expressing c-MYC-lucOSOE/Tp53KO hepatocellular carcinoma (HCC) mouse model that simulates immune response against tumour-associated antigens. Using data-independent acquisition proteomics, we reveal the role of wild-type KRAS in immune escaped mouse HCC tumours, with EGF concurrently activating EGFR/MEK/ERK signalling. Single cell RNA sequencing data analysis reveals that KRAS signalling intrinsically inhibits interferon-mediated MHC-I expression a... More

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