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A feed-forward loop between lncARSR and YAP activity promotes expansion of renal tumour-initiating cells.


ABSTRACT: Renal tumour-initiating cells (T-ICs) contribute to tumorigenesis, progression and drug resistance of renal cell carcinoma (RCC). However, the underlying mechanism for the propagation of renal T-ICs remains unclear. Here we show that long non-coding RNA lncARSR is upregulated in primary renal T-ICs and associated with a poor prognosis of clear cell RCCs (ccRCC). Knockdown of lncARSR attenuates the self-renewal, tumorigenicity and metastasis of renal T-ICs. Conversely, forced lncARSR expression enhances T-IC properties of RCC cells. Mechanistically, the binding of lncARSR to YAP impedes LATS1-induced YAP phosphorylation and facilitates YAP nuclear translocation. Reciprocally, YAP/TEAD promotes lncARSR transcription, thus forming a feed-forward circuit. The correlation between lncARSR and YAP is validated in a ccRCC cohort, where the combination of these two parameters exhibits improved prognostic accuracy. Our findings indicate that lncARSR plays a critical role in renal T-ICs propagation and may serve as a prognostic biomarker and potential therapeutic target.

SUBMITTER: Qu L 

PROVIDER: S-EPMC5133634 | biostudies-literature | 2016 Nov

REPOSITORIES: biostudies-literature

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A feed-forward loop between lncARSR and YAP activity promotes expansion of renal tumour-initiating cells.

Qu Le L   Wu Zhenjie Z   Li Yaoming Y   Xu Zhipeng Z   Liu Bing B   Liu Feng F   Bao Yi Y   Wu Dengshuang D   Liu Jiayi J   Wang Anbang A   Chu Xiaoyuan X   Sun Yinghao Y   Chen Cheng C   Zhang Zhengyu Z   Wang Linhui L  

Nature communications 20161125


Renal tumour-initiating cells (T-ICs) contribute to tumorigenesis, progression and drug resistance of renal cell carcinoma (RCC). However, the underlying mechanism for the propagation of renal T-ICs remains unclear. Here we show that long non-coding RNA lncARSR is upregulated in primary renal T-ICs and associated with a poor prognosis of clear cell RCCs (ccRCC). Knockdown of lncARSR attenuates the self-renewal, tumorigenicity and metastasis of renal T-ICs. Conversely, forced lncARSR expression e  ...[more]

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