Author: Tong, Xinyuan; Chen, Yueqing; Zhu, Xinsheng; Ye, Yi; Xue, Yun; Wang, Rui; Gao, Yijun; Zhang, Wenjing; Gao, Weiqiang; Xiao, Lei; Chen, Haiquan; Zhang, Peng; Ji, Hongbin
Title: Nanog maintains stemness of Lkb1â€deficient lung adenocarcinoma and prevents gastric differentiation Cord-id: 44pweb9r Document date: 2021_1_13
ID: 44pweb9r
Snippet: Growing evidence supports that LKB1â€deficient KRASâ€driven lung tumors represent a unique therapeutic challenge, displaying strong cancer plasticity that promotes lineage conversion and drug resistance. Here we find that murine lung tumors from the Kras(LSLâ€G12D/+); Lkb1(flox/flox) (KL) model show strong plasticity, which associates with upâ€regulation of stem cell pluripotency genes such as Nanog. Deletion of Nanog in KL model initiates a gastric differentiation program and promotes mucin
Document: Growing evidence supports that LKB1â€deficient KRASâ€driven lung tumors represent a unique therapeutic challenge, displaying strong cancer plasticity that promotes lineage conversion and drug resistance. Here we find that murine lung tumors from the Kras(LSLâ€G12D/+); Lkb1(flox/flox) (KL) model show strong plasticity, which associates with upâ€regulation of stem cell pluripotency genes such as Nanog. Deletion of Nanog in KL model initiates a gastric differentiation program and promotes mucinous lung tumor growth. We find that NANOG is not expressed at a meaningful level in human lung adenocarcinoma (ADC), as well as in human lung invasive mucinous adenocarcinoma (IMA). Gastric differentiation involves activation of Notch signaling, and perturbation of Notch pathway by the γâ€secretase inhibitor LYâ€411575 remarkably impairs mucinous tumor formation. In contrast to nonâ€mucinous tumors, mucinous tumors are resistant to phenformin treatment. Such therapeutic resistance could be overcome through combined treatments with LYâ€411575 and phenformin. Overall, we uncover a previously unappreciated plasticity of LKB1â€deficient tumors and identify the Nanogâ€Notch axis in regulating gastric differentiation, which holds important therapeutic implication for the treatment of mucinous lung cancer.
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