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Essential role of Raf in Ras transformation and deregulation of matrix metalloproteinase expression in ovarian epithelial cells.

机译:Raf在卵巢上皮细胞中Ras转化和基质金属蛋白酶表达失控中的重要作用。

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Oncogenic Ras mediates its actions through activation of multiple downstream effector signaling cascades, which in turn regulate transcription factor activation and cause changes in gene expression. However, there exist striking cell type differences in effector pathways that are activated by Ras, in which effectors are sufficient or necessary to promote Ras oncogenesis, and in the gene targets of Ras transformation. Therefore, we evaluated the contribution of specific effectors in mediating H-Ras(12V) transformation of rat ovarian surface epithelial (ROSE) cells and up-regulation of matrix metalloproteinase (MMP) gene expression. First, we found that Raf activation alone was sufficient to partially reconstitute H-Ras(12V)-mediated morphological and growth transformation. However, Raf-independent signaling pathways are required for full Ras transformation of ROSE cells. Ras transformation did not cause activation of the phosphatidylinositol 3-kinase (PI3K) target, Akt, and PI3K inhibition did not reverse morphological transformation but did inhibit growth in soft agar, indicating a role for basal PI3K activity in anchorage-independent growth. Second, we determined that MMP-3 and MMP-10, but surprisingly not MMP-9, gene expression was up-regulated in Ras-transformed ROSE cells. Raf activation alone was fully sufficient and necessary for MMP transcriptional up-regulation. However, up-regulation of MMP-3 or MMP-10 gene expression alone is not critical for Ras-mediated transformation. In summary, in contrast to other epithelial cell types, Raf is a major effector for Ras transformation of ovarian epithelial cells.
机译:致癌Ras通过激活多个下游效应子信号级联反应介导其作用,进而调节转录因子的活化并引起基因表达的变化。但是,在由Ras激活的效应子途径中存在惊人的细胞类型差异,其中效应子足以或必需促进Ras肿瘤发生,并且在Ras转化的基因靶标中。因此,我们评估了特定效应子在介导大鼠卵巢表面上皮(ROSE)细胞的H-Ras(12V)转化和基质金属蛋白酶(MMP)基因表达上调中的作用。首先,我们发现仅Raf激活就足以部分重构H-Ras(12V)介导的形态和生长转化。但是,ROSF细胞的完整Ras转化需要独立于Raf的信号通路。 Ras转化不会引起磷脂酰肌醇3-激酶(PI3K)靶标,Akt的激活,并且PI3K抑制不会逆转形态转化,但会抑制软琼脂的生长,表明基础PI3K活性在不依赖锚定的生长中起作用。其次,我们确定在Ras转化的ROSE细胞中,MMP-3和MMP-10(而不是MMP-9)的基因表达上调。单独的Raf激活对于MMP转录上调是完全足够和必要的。但是,单独的MMP-3或MMP-10基因表达的上调对于Ras介导的转化并不关键。总之,与其他上皮细胞类型相反,Raf是卵巢上皮细胞Ras转化的主要效应子。

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