Intratumoural heterogeneity generated by Notch signalling promotes small-cell lung cancer

Notch信号通路 癌症研究 生物 肺癌 神经内分泌分化 细胞命运测定 细胞生物学 癌症干细胞 信号转导 癌症 病理 干细胞 医学 基因 遗传学 转录因子 前列腺癌
作者
Jing Shan Lim,Alvaro Ibaseta,Marcus Fischer,Belinda Cancilla,Gilbert O’Young,Sandra Cristea,Vincent C. Luca,Dian Yang,Nadine S. Jahchan,Cécile Hamard,Martine Antoine,Marie Wislez,Christina S. Kong,Jennifer Cain,Yuwang Liu,Ann M. Kapoun,K. Christopher García,Timothy Hoey,Christopher L. Murriel,Julien Sage
出处
期刊:Nature [Nature Portfolio]
卷期号:545 (7654): 360-364 被引量:484
标识
DOI:10.1038/nature22323
摘要

The Notch signalling pathway mediates cell fate decisions and is tumour suppressive or oncogenic depending on the context. During lung development, Notch pathway activation inhibits the differentiation of precursor cells to a neuroendocrine fate. In small-cell lung cancer, an aggressive neuroendocrine lung cancer, loss-of-function mutations in NOTCH genes and the inhibitory effects of ectopic Notch activation indicate that Notch signalling is tumour suppressive. Here we show that Notch signalling can be both tumour suppressive and pro-tumorigenic in small-cell lung cancer. Endogenous activation of the Notch pathway results in a neuroendocrine to non-neuroendocrine fate switch in 10-50% of tumour cells in a mouse model of small-cell lung cancer and in human tumours. This switch is mediated in part by Rest (also known as Nrsf), a transcriptional repressor that inhibits neuroendocrine gene expression. Non-neuroendocrine Notch-active small-cell lung cancer cells are slow growing, consistent with a tumour-suppressive role for Notch, but these cells are also relatively chemoresistant and provide trophic support to neuroendocrine tumour cells, consistent with a pro-tumorigenic role. Importantly, Notch blockade in combination with chemotherapy suppresses tumour growth and delays relapse in pre-clinical models. Thus, small-cell lung cancer tumours generate their own microenvironment via activation of Notch signalling in a subset of tumour cells, and the presence of these cells may serve as a biomarker for the use of Notch pathway inhibitors in combination with chemotherapy in select patients with small-cell lung cancer.
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