SMAD4-dependent barrier constrains prostate cancer growth and metastatic progression

PTEN公司 前列腺癌 前列腺 癌症研究 转移 生物 肿瘤进展 医学 转录组 癌症 病理 PI3K/AKT/mTOR通路 基因 信号转导 基因表达 遗传学
作者
Zhihu Ding,Chang‐Jiun Wu,Gerald C. Chu,Yonghong Xiao,Dennis Chun‐Yu Ho,Jingfang Zhang,Samuel R. Perry,Emma Labrot,Xiaoqiu Wu,Rosina T. Lis,Yujin Hoshida,D. Hiller,Baoli Hu,Shan Jiang,Hongwu Zheng,Alexander H. Stegh,Kenneth L. Scott,Sabina Signoretti,Nabeel Bardeesy,Y. Alan Wang,David E. Hill,Todd R. Golub,Meir J. Stampfer,Wing H. Wong,Massimo Loda,Lorelei A. Mucci,Lynda Chin,Ronald A. DePinho
出处
期刊:Nature [Springer Nature]
卷期号:470 (7333): 269-273 被引量:495
标识
DOI:10.1038/nature09677
摘要

Effective clinical management of prostate cancer (PCA) has been challenged by significant intratumoural heterogeneity on the genomic and pathological levels and limited understanding of the genetic elements governing disease progression. Here, we exploited the experimental merits of the mouse to test the hypothesis that pathways constraining progression might be activated in indolent Pten-null mouse prostate tumours and that inactivation of such progression barriers in mice would engender a metastasis-prone condition. Comparative transcriptomic and canonical pathway analyses, followed by biochemical confirmation, of normal prostate epithelium versus poorly progressive Pten-null prostate cancers revealed robust activation of the TGFβ/BMP-SMAD4 signalling axis. The functional relevance of SMAD4 was further supported by emergence of invasive, metastatic and lethal prostate cancers with 100% penetrance upon genetic deletion of Smad4 in the Pten-null mouse prostate. Pathological and molecular analysis as well as transcriptomic knowledge-based pathway profiling of emerging tumours identified cell proliferation and invasion as two cardinal tumour biological features in the metastatic Smad4/Pten-null PCA model. Follow-on pathological and functional assessment confirmed cyclin D1 and SPP1 as key mediators of these biological processes, which together with PTEN and SMAD4, form a four-gene signature that is prognostic of prostate-specific antigen (PSA) biochemical recurrence and lethal metastasis in human PCA. This model-informed progression analysis, together with genetic, functional and translational studies, establishes SMAD4 as a key regulator of PCA progression in mice and humans.

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