Role of the ductal transcription factors HNF6 and Sox9 in pancreatic acinar-to-ductal metaplasia

导管细胞 胰腺上皮内瘤变 化生 癌症研究 转录因子 硫氧化物9 腺泡细胞 异位表达 生物 医学 胰腺 病理 内分泌学 内科学 胰腺癌 癌症 胰腺导管腺癌 细胞培养 基因 生物化学 遗传学
作者
Pierre-Paul Prévôt,Alexandru Simion,Adrien Grimont,Marta Colletti,Abed Khalaileh,Géraldine Van Den Steen,Christine Sempoux,Xiaobo Xu,Véronique Roelants,Jacob Hald,Luc Bertrand,Harry Heimberg,Stephen F. Konieczny,Yuval Dor,Frédéric P. Lemaigre,Patrick Jacquemin
出处
期刊:Gut [BMJ]
卷期号:61 (12): 1723-1732 被引量:115
标识
DOI:10.1136/gutjnl-2011-300266
摘要

Objective

Growing evidence suggests that a phenotypic switch converting pancreatic acinar cells to duct-like cells can lead to pancreatic intraepithelial neoplasia and eventually to invasive pancreatic ductal adenocarcinoma. Histologically, the onset of this switch is characterised by the co-expression of acinar and ductal markers in acini, a lesion called acinar-to-ductal metaplasia (ADM). The transcriptional regulators required to initiate ADM are unknown, but need to be identified to characterise the regulatory networks that drive ADM. In this study, the role of the ductal transcription factors hepatocyte nuclear factor 6 (HNF6, also known as Onecut1) and SRY-related HMG box factor 9 (Sox9) in ADM was investigated.

Design

Expression of HNF6 and Sox9 was measured by immunostaining in normal and diseased human pancreas. The function of the factors was tested in cultured cells and in mouse models of ADM by a combination of gain and loss of function experiments.

Results

Expression of HNF6 and Sox9 was ectopically induced in acinar cells in human ADM as well as in mouse models of ADM. HNF6 and, to a lesser extent, Sox9 were required for repression of acinar genes, for modulation of ADM-associated changes in cell polarity and for activation of ductal genes in metaplastic acinar cells.

Conclusions

HNF6 and Sox9 are new biomarkers of ADM and constitute candidate targets for preventive treatment in cases when ADM may lead to cancer. This work also shows that ectopic activation of transcription factors may underlie metaplastic processes occurring in other organs.
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