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黑色素瘤分化相关基因7在乳腺和肺癌细胞中对β-连环蛋白和磷脂酰肌醇-3-激酶信号通路起负向调控作用。

MDA-7 negatively regulates the beta-catenin and PI3K signaling pathways in breast and lung tumor cells.

作者信息

Mhashilkar Abner M, Stewart Alexis L, Sieger Kerry, Yang Heng-Yin, Khimani Anis H, Ito Isao, Saito Yuji, Hunt Kelly K, Grimm Elizabeth A, Roth Jack A, Meyn Raymond E, Ramesh Rajagopal, Chada Sunil

机构信息

Introgen Therapeutics, Inc., Houston, Texas, 77030, USA.

出版信息

Mol Ther. 2003 Aug;8(2):207-19. doi: 10.1016/s1525-0016(03)00170-9.

Abstract

mda-7 is a novel tumor suppressor with cytokine properties. Adenoviral mda-7 (Ad-mda7) induces apoptosis and cell death selectively in tumor cells. The molecular mechanisms underlying the anti-tumor activity of Ad-mda7 in breast and lung cancer lines were investigated. Microarray analyses implicated both the beta-catenin and the PI3K signaling pathways. Ad-mda7 treatment increased protein expression from tumor suppressor genes, including E-cadherin, APC, GSK-3beta, and PTEN, and decreased expression of proto-oncogenes involved in beta-catenin and PI3K signaling. Ad-mda7 caused a redistribution of cellular beta-catenin from the nucleus to the plasma membrane, resulting in reduced TCF/LEF transcriptional activity, and upregulated the E-cadherin-beta-catenin adhesion complex in a tumor cell-specific manner. Expression of the PI3K pathway members (p85 PI3K, FAK, ILK-1, Akt, and PLC-gamma) was downregulated and expression of the PI3K antagonist PTEN was increased. Consistent with this result, pharmacological inhibition of PI3K by wortmannin did not abrogate killing by Ad-mda7. Killing of breast cancer cells by Ad-mda7 required both MAPK and MEK1/2 signaling pathways, whereas these pathways were not essential for MDA-7-mediated killing in lung cancer cells. Thus, in breast and lung tumor cells MDA-7 protein expression modulates cell-cell adhesion and intracellular signaling via coordinate regulation of the beta-catenin and PI3K pathways.

摘要

mda - 7是一种具有细胞因子特性的新型肿瘤抑制因子。腺病毒mda - 7(Ad - mda7)可在肿瘤细胞中选择性地诱导凋亡和细胞死亡。本研究调查了Ad - mda7在乳腺癌和肺癌细胞系中抗肿瘤活性的分子机制。微阵列分析表明β - 连环蛋白和PI3K信号通路均参与其中。Ad - mda7处理可增加包括E - 钙黏蛋白、APC、GSK - 3β和PTEN等肿瘤抑制基因的蛋白表达,并降低参与β - 连环蛋白和PI3K信号传导的原癌基因的表达。Ad - mda7导致细胞内β - 连环蛋白从细胞核重新分布到质膜,从而降低TCF/LEF转录活性,并以肿瘤细胞特异性方式上调E - 钙黏蛋白 - β - 连环蛋白黏附复合体。PI3K信号通路成员(p85 PI3K、FAK、ILK - 1、Akt和PLC - γ)的表达下调,而PI3K拮抗剂PTEN的表达增加。与该结果一致,渥曼青霉素对PI3K的药理抑制作用并未消除Ad - mda7的杀伤作用。Ad - mda7对乳腺癌细胞的杀伤作用需要MAPK和MEK1/2信号通路,而这些通路对于MDA - 7介导的肺癌细胞杀伤并非必需。因此,在乳腺癌和肺癌细胞中,MDA - 7蛋白表达通过对β - 连环蛋白和PI3K通路的协同调节来调节细胞间黏附和细胞内信号传导。

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