Oncogenic consequences of down-modulating TIMP expression in 3T3 cells with antisense RNA.

D T Denhardt, R Khokha, S Yagel, C M Overall, R S Parhar
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Abstract

We have used recombinant DNA technology to engineer a set of murine 3T3 cell lines that vary in the extent to which they express TIMP, tissue inhibitor of metalloproteinases, and we have found that both invasiveness and tumorigenic potential are conferred when TIMP production is impaired. These cell clones were produced by transfecting immortal Swiss 3T3 cells with plasmid constructs capable of expressing antisense TIMP RNA under the control of the mouse metallothionein promoter (Khokha & Denhardt, AntiCancer Res. 7: 653-660, 1987). The ability of these cells to invade the amnion membrane in vitro was dependent upon metalloproteinase expression (Yagel et al., JNCI 81: 768-775, 1989). Cells expressing TIMP at a reduced level acquired the ability to form tumors in nude mice (Khokha et al. SCIENCE 243: 947-950, 1989). These results suggest not only that TIMP controls the invasive character of the immortal 3T3 cell, but also that it determines cellular tumorigenic potential in the mouse. We presume that these phenotypes are conferred as a consequence of a net increase in extracellular matrix metalloproteinase activity resulting from the reduced quantities of TIMP secreted. The lag in formation of tumors by the cells down-modulated for TIMP production suggests that further changes in gene expression may be necessary. In support of this hypothesis, recent experiments indicate that the expression of genes encoding one or more matrix metalloproteinases is increased in cell lines derived from tumors that have developed from the engineered cells. Thus, in the immortal 3T3 cell line, TIMP has the properties of a tumor-suppressor gene, or anti-oncogene.

下调带反义RNA的3T3细胞中TIMP表达的致癌后果。
我们使用重组DNA技术设计了一组小鼠3T3细胞系,这些细胞系表达TIMP(金属蛋白酶的组织抑制剂)的程度不同,我们发现当TIMP的产生受损时,具有侵袭性和致瘤性潜力。这些细胞克隆是通过在小鼠金属硫蛋白启动子的控制下,用能够表达反义TIMP RNA的质粒转染不朽的Swiss 3T3细胞而产生的(Khokha & Denhardt,抗癌研究,7:653-660,1987)。这些细胞在体外侵入羊膜的能力依赖于金属蛋白酶的表达(Yagel等人,JNCI 81: 768-775, 1989)。低水平表达TIMP的细胞在裸鼠体内获得了形成肿瘤的能力(Khokha等)。科学43(3):947-950,1989)。这些结果表明,TIMP不仅控制着3T3细胞的侵袭特性,而且还决定着小鼠细胞的致瘤潜能。我们推测这些表型是由于分泌的TIMP数量减少导致细胞外基质金属蛋白酶活性净增加的结果。下调TIMP产生的细胞在肿瘤形成方面的滞后表明,基因表达的进一步变化可能是必要的。为了支持这一假设,最近的实验表明,编码一种或多种基质金属蛋白酶的基因在由工程细胞发展而来的肿瘤细胞系中表达增加。因此,在不朽的3T3细胞系中,TIMP具有肿瘤抑制基因或抗癌基因的特性。
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