Berenjeno I M, Núñez F, Bustelo X R
Centro de Investigación del Cáncer and Instituto de Biología Molecular y Celular del Cáncer (IBMCC), CSIC-University of Salamanca, Campus Unamuno, Salamanca, Spain.
Oncogene. 2007 Jun 21;26(29):4295-305. doi: 10.1038/sj.onc.1210194. Epub 2007 Jan 8.
We have used microarray technology to identify the transcriptional targets of Rho subfamily guanosine 5'-triphosphate (GTP)ases in NIH3T3 cells. This analysis indicated that murine fibroblasts transformed by these proteins show similar transcriptomal profiles. Functional annotation of the regulated genes indicate that Rho subfamily GTPases target a wide spectrum of functions, although loci encoding proteins linked to proliferation and DNA synthesis/transcription are upregulated preferentially. Rho proteins promote four main networks of interacting proteins nucleated around E2F, c-Jun, c-Myc and p53. Of those, E2F, c-Jun and c-Myc are essential for the maintenance of cell transformation. Inhibition of Rock, one of the main Rho GTPase targets, leads to small changes in the transcriptome of Rho-transformed cells. Rock inhibition decreases c-myc gene expression without affecting the E2F and c-Jun pathways. Loss-of-function studies demonstrate that c-Myc is important for the blockage of cell-contact inhibition rather than for promoting the proliferation of Rho-transformed cells. However, c-Myc overexpression does not bypass the inhibition of cell transformation induced by Rock blockage, indicating that c-Myc is essential, but not sufficient, for Rock-dependent transformation. These results reveal the complexity of the genetic program orchestrated by the Rho subfamily and pinpoint protein networks that mediate different aspects of the malignant phenotype of Rho-transformed cells.
我们利用微阵列技术在NIH3T3细胞中鉴定Rho亚家族鸟苷5'-三磷酸(GTP)酶的转录靶点。该分析表明,由这些蛋白质转化的小鼠成纤维细胞显示出相似的转录组图谱。对受调控基因的功能注释表明,Rho亚家族GTP酶靶向广泛的功能,尽管与增殖和DNA合成/转录相关的蛋白质编码基因座优先上调。Rho蛋白促进围绕E2F、c-Jun、c-Myc和p53形成的四个主要相互作用蛋白网络。其中,E2F、c-Jun和c-Myc对于维持细胞转化至关重要。抑制Rock(Rho GTP酶的主要靶点之一)会导致Rho转化细胞的转录组发生微小变化。抑制Rock会降低c-myc基因表达,而不影响E2F和c-Jun途径。功能丧失研究表明,c-Myc对于阻断细胞接触抑制很重要,而不是促进Rho转化细胞的增殖。然而,c-Myc的过表达并不能绕过由Rock阻断诱导的细胞转化抑制,这表明c-Myc对于Rock依赖性转化是必不可少的,但并不充分。这些结果揭示了由Rho亚家族精心编排的遗传程序的复杂性,并确定了介导Rho转化细胞恶性表型不同方面的蛋白质网络。