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致癌性Ras/Her-2通过PI3K途径介导三维培养中极化上皮细胞的过度增殖和肿瘤的快速生长。

Oncogenic Ras/Her-2 mediate hyperproliferation of polarized epithelial cells in 3D cultures and rapid tumor growth via the PI3K pathway.

作者信息

Janda Elzbieta, Litos Gabi, Grünert Stefan, Downward Julian, Beug Hartmut

机构信息

Institute of Molecular Pathology, Dr. Bohr-Gasse 7, A-1030 Vienna, Austria.

出版信息

Oncogene. 2002 Aug 1;21(33):5148-59. doi: 10.1038/sj.onc.1205661.

Abstract

Carcinogenesis by oncogenic Ras and Her-2 involves enhanced proliferation of epithelial cells in vivo. However, hyperproliferation induced by these oncogenes, or their downstream pathways in vitro has mainly been studied in cultured, fibroblastic cell lines. Here, we demonstrate that oncogenic Ha-Ras or constitutively active Her-2 cause increased proliferation and cyclin D1 upregulation in fully polarized, mammary epithelial cells (EpH4), if cultivated as organotypic structures in three-dimensional collagen/matrigel matrices. Under standard culture conditions, however, these oncogenes failed to induce hyperproliferation. Using both specific low molecular weight inhibitors and Ras-effector-specific mutants, we dissected signaling pathways downstream of oncogenic Ras (PI3K, Mek1/MAPK) with respect to (i) hyperproliferation in collagen gels and tumorigenesis in mice and (ii) epithelial/mesenchymal transition (EMT). We show that the Ras-activated PI3K pathway is required to induce rapid tumor growth and enhanced proliferation of EpH4 cells in collagen gels, but fails to cause EMT in vitro and in vivo. On the other hand, Ras-dependent activation of the Mek1/MAPK pathway in EpH4 cells (previously shown to cause EMT and metastasis) did not induce hyperproliferation in collagen gels and caused only slow tumor growth. Our data thus indicate that Ras-dependent signaling through the PI3K- and MAPK pathways fulfil distinct, but complementary functions during carcinogenesis.

摘要

致癌性Ras和Her-2引发的致癌作用涉及体内上皮细胞的增殖增强。然而,这些致癌基因或其体外下游通路诱导的过度增殖主要是在培养的成纤维细胞系中进行研究的。在此,我们证明,如果在三维胶原蛋白/基质胶基质中作为器官样结构培养,致癌性Ha-Ras或组成型激活的Her-2会导致完全极化的乳腺上皮细胞(EpH4)增殖增加和细胞周期蛋白D1上调。然而,在标准培养条件下,这些致癌基因未能诱导过度增殖。我们使用特异性低分子量抑制剂和Ras效应器特异性突变体,针对(i)胶原蛋白凝胶中的过度增殖和小鼠肿瘤发生以及(ii)上皮/间充质转化(EMT),剖析了致癌性Ras下游的信号通路(PI3K、Mek1/MAPK)。我们表明,Ras激活的PI3K通路是诱导EpH4细胞在胶原蛋白凝胶中快速肿瘤生长和增殖增强所必需的,但在体外和体内均未能引起EMT。另一方面,EpH4细胞中Ras依赖的Mek1/MAPK通路激活(先前已证明可导致EMT和转移)在胶原蛋白凝胶中未诱导过度增殖,仅导致缓慢的肿瘤生长。因此,我们的数据表明,通过PI3K和MAPK通路的Ras依赖信号在致癌过程中发挥着不同但互补的功能。

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