Ikezu T, Okamoto T, Murayama Y, Okamoto T, Homma Y, Ogata E, Nishimoto I
Fourth Department of Internal Medicine, Tokyo University School of Medicine, Japan.
J Biol Chem. 1994 Dec 16;269(50):31955-61.
G alpha i2 is a tissue-specific proto-oncogene product, whose activated mutant gip2 induces transformation through less defined downstream pathways. We found that c-fos promoter is a target of gip2 in multiple kinds of cells. Serum response element was shown to be the positive enhancer element that mediates gip2-induced c-fos expression. We further demonstrated that gip2 stimulates the negative silencer activity of the retinoblastoma (Rb) control element (RCE) and inhibits the c-fos promoter activity through RCE located in the c-fos promoter region. The effect of gip2 on RCE was shown to be mediated by the Rb gene product (pRb). Furthermore, gip2 augmented underphosphorylated active form of pRb by promoting pRb expression and by affecting the phosphorylation state of pRb. gip2 therefore propagates both positive and negative signals to the c-fos promoter through two different elements, and pRb mediates the negative signal of gip2. We conclude that gip2 has bifunctional roles in transformation which pRb critically regulates. Given that Rat-1 cells, which gip2 can transform, lack the sensitivity to the gip2/pRb-mediated negative pathway, this study provides a novel insight into oncogenesis by gip2 and its tissue specificity.
Gαi2是一种组织特异性原癌基因产物,其激活的突变体gip2通过不太明确的下游途径诱导细胞转化。我们发现c-fos启动子是多种细胞中gip2的作用靶点。血清反应元件被证明是介导gip2诱导的c-fos表达的正向增强元件。我们进一步证明,gip2刺激视网膜母细胞瘤(Rb)控制元件(RCE)的负沉默子活性,并通过位于c-fos启动子区域的RCE抑制c-fos启动子活性。gip2对RCE的作用被证明是由Rb基因产物(pRb)介导的。此外,gip2通过促进pRb表达和影响pRb的磷酸化状态来增强pRb的低磷酸化活性形式。因此,gip2通过两个不同的元件向c-fos启动子传递正向和负向信号,并且pRb介导gip2的负向信号。我们得出结论,gip2在细胞转化中具有双功能作用,而pRb对其起着关键调节作用。鉴于gip2能够转化的Rat-1细胞对gip2/pRb介导的负向途径缺乏敏感性,本研究为gip2的肿瘤发生及其组织特异性提供了新的见解。