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SOX9 介导的缺氧非依赖性基因表达促进侵袭性胰腺肿瘤生物学。

Hypoxia-independent gene expression mediated by SOX9 promotes aggressive pancreatic tumor biology.

机构信息

Klinikum Großhadern, VH02 426, Marchioninistr. 15, 81377 München, Germany.

出版信息

Mol Cancer Res. 2014 Mar;12(3):421-32. doi: 10.1158/1541-7786.MCR-13-0351. Epub 2013 Dec 3.

Abstract

UNLABELLED

Pancreatic cancer aggressiveness is characterized by its high capacity for local invasion, ability to promote angiogenesis, and potential to metastasize. Hypoxia is known to represent a crucial step in the development of aggressive malignant features of many human cancers. However, micrometastatic tumors are not typically subjected to hypoxic events during early stages of dissemination; therefore, it is unclear how these tumors are able to maintain their aggressive phenotype. Thus, the identification of regulators of hypoxia-related genes in aggressive/metastatic tumors represents a fundamental step for the design of future therapies to treat pancreatic cancer. To this end, transcriptomic profiles were compared between the nonmetastatic pancreatic cancer cell line FG (LMET) and its angiogenic/metastatic derivate L3.6pl (HMET) under normoxic or hypoxic conditions. Cluster analysis revealed a number of transcripts that were induced by hypoxia in nonmetastatic cancer cells. Strikingly, this cluster was determined to be constitutively activated under normoxia in the metastatic cancer cells and could not be further induced by hypoxia. A subset of these transcripts were regulated by the transcription factor SOX9 in the aggressive-metastatic cells, but driven by hypoxia-inducible factor-1α (HIF-1α) in the parental nonmetastatic cell line. Moreover, these transcripts were enriched in cancer-related networks including: WNT, CXCR4, retinoic acid, and (FAK) focal adhesion kinase, gene PTK2 signaling pathways. In functional assays, inhibition of SOX9 expression in HMET cells led to increased apoptosis and reduced migration in vitro and a significant reduction in primary tumor growth, angiogenesis, and metastasis following orthotopic tumor cell injection. At the molecular level, the control of SOX9 expression was associated with changes in the methylation status of the SOX9 promoter. Finally, SOX9 upregulation was verified in a series of tumor specimens of patients with pancreatic carcinoma.

IMPLICATIONS

SOX9 represents a novel target for pancreatic cancer therapy.

摘要

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胰腺癌的侵袭性特征表现为其强大的局部浸润能力、促进血管生成的能力以及转移的潜力。众所周知,缺氧是许多人类癌症中侵袭性恶性特征发展的关键步骤。然而,微转移肿瘤在早期播散过程中通常不会经历缺氧事件;因此,尚不清楚这些肿瘤如何能够保持其侵袭性表型。因此,确定侵袭性/转移性肿瘤中与缺氧相关基因的调节剂代表了设计未来治疗胰腺癌的基础步骤。为此,在常氧或缺氧条件下,将非转移性胰腺癌细胞系 FG (LMET)与其血管生成/转移性衍生物 L3.6pl (HMET)的转录组谱进行了比较。聚类分析显示了许多在非转移性癌细胞中受缺氧诱导的转录本。引人注目的是,该簇在转移性癌细胞中在常氧条件下被确定为持续激活,并且不能被缺氧进一步诱导。这些转录本中的一部分受转录因子 SOX9 在侵袭性转移性细胞中的调节,但在亲本非转移性细胞系中由缺氧诱导因子-1α (HIF-1α)驱动。此外,这些转录本在癌症相关网络中富集,包括:WNT、CXCR4、维甲酸和(FAK)焦点黏附激酶、基因 PTK2 信号通路。在功能测定中,HMET 细胞中 SOX9 表达的抑制导致体外细胞凋亡和迁移减少,以及荷瘤细胞注射后原发肿瘤生长、血管生成和转移的显著减少。在分子水平上,SOX9 表达的控制与 SOX9 启动子甲基化状态的变化相关。最后,在一系列胰腺癌患者的肿瘤标本中验证了 SOX9 的上调。

意义

SOX9 代表了胰腺癌治疗的新靶点。

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