| Literature DB >> 25115923 |
Yijun Gao1, Wenjing Zhang1, Xiangkun Han2, Fuming Li2, Xujun Wang3, Rui Wang4, Zhaoyuan Fang2, Xinyuan Tong2, Shun Yao2, Fei Li2, Yan Feng2, Yihua Sun4, Yingyong Hou5, Zhongzhou Yang6, Kunliang Guan7, Haiquan Chen4, Lei Zhang2, Hongbin Ji2.
Abstract
Whether the Hippo pathway contributes to cell lineage transition under pathological conditions, especially tumorigenesis, remains largely unknown. Here we show that YAP, the major effector of the Hippo pathway, displays a distinct activation pattern in lung adenocarcinoma (ADC) and squamous cell carcinoma (SCC); YAP is initially activated by LKB1 loss in lung ADC, which upregulates ZEB2 expression and represses DNp63 transcription in a default manner. During transdifferentiation, YAP is inactivated, which in turn relieves ZEB2-mediated default repression of DNp63 and triggers squamous differentiation reprogramming. Disruption of the YAP barrier for phenotypic transition significantly accelerates squamous transdifferentiation, whereas constitutive YAP activation conversely inhibits this transition. More importantly, ectopic DNp63 expression rescues the inhibitory effect of YAP on squamous transdifferentiation. These findings have established YAP as an essential barrier for lung cancer cell fate conversion and provided a mechanism for regulating cancer plasticity, which might hold important implication for YAP-targeted therapies.Entities:
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Year: 2014 PMID: 25115923 DOI: 10.1038/ncomms5629
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919