SOX9 regulates ERBB signalling in pancreatic cancer development

硫氧化物9 癌症研究 ErbB公司 导管细胞 胰腺癌 转录因子 生物 医学 胰腺 癌症 内科学 基因 遗传学
作者
Adrien Grimont,Andreia V. Pinho,Mark J. Cowley,Cécile Augereau,Amanda Mawson,Marc Giry-Laterrière,Géraldine Van Den Steen,Nicola Waddell,Marina Pajic,Christine Sempoux,Jianmin Wu,Sean M. Grimmond,Andrew V. Biankin,Frédéric P. Lemaigre,Ilse Rooman,Patrick Jacquemin
出处
期刊:Gut [BMJ]
卷期号:64 (11): 1790-1799 被引量:79
标识
DOI:10.1136/gutjnl-2014-307075
摘要

Objective

The transcription factor SOX9 was recently shown to stimulate ductal gene expression in pancreatic acinar-to-ductal metaplasia and to accelerate development of premalignant lesions preceding pancreatic ductal adenocarcinoma (PDAC). Here, we investigate how SOX9 operates in pancreatic tumourigenesis.

Design

We analysed genomic and transcriptomic data from surgically resected PDAC and extended the expression analysis to xenografts from PDAC samples and to PDAC cell lines. SOX9 expression was manipulated in human cell lines and mouse models developing PDAC.

Results

We found genetic aberrations in the SOX9 gene in about 15% of patient tumours. Most PDAC samples strongly express SOX9 protein, and SOX9 levels are higher in classical PDAC. This tumour subtype is associated with better patient outcome, and cell lines of this subtype respond to therapy targeting epidermal growth factor receptor (EGFR/ERBB1) signalling, a pathway essential for pancreatic tumourigenesis. In human PDAC, high expression of SOX9 correlates with expression of genes belonging to the ERBB pathway. In particular, ERBB2 expression in PDAC cell lines is stimulated by SOX9. Inactivating Sox9 expression in mice confirmed its role in PDAC initiation; it demonstrated that Sox9 stimulates expression of several members of the ERBB pathway and is required for ERBB signalling activity.

Conclusions

By integrating data from patient samples and mouse models, we found that SOX9 regulates the ERBB pathway throughout pancreatic tumourigenesis. Our work opens perspectives for therapy targeting tumourigenic mechanisms.
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