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位点特异性Ras信号的转录组分析

Transcriptomal profiling of site-specific Ras signals.

作者信息

Agudo-Ibáñez Lorena, Núñez Fátima, Calvo Fernando, Berenjeno Inmaculada M, Bustelo Xosé R, Crespo Piero

机构信息

Instituto de Investigaciones Biomédicas, Consejo Superior de Investigaciones Científicas (CSIC), Departamento de Biología Molecular, Unidad de Biomedicina, CSIC-Universidad de Cantabria, Santander, Spain.

出版信息

Cell Signal. 2007 Nov;19(11):2264-76. doi: 10.1016/j.cellsig.2007.06.025. Epub 2007 Jul 4.

Abstract

Ras proteins are distributed in distinct plasma-membrane microdomains and endomembranes. The biochemical signals generated by Ras therein differ qualitatively and quantitatively, but the extent to which this spatial variability impacts on the genetic program switched-on by Ras is unknown. We have used microarray technology to identify the transcriptional targets of localization-specific Ras subsignals in NIH3T3 cells expressing H-RasV12 selectively tethered to distinct cellular microenvironments. We report that the transcriptomes resulting from site-specific Ras activation show a significant overlap. However, distinct genetic signatures can also be found for each of the Ras subsignals. Our analyses unveil 121 genes uniquely regulated by Ras signals emanating from plasma-membrane microdomains. Interestingly, not a single gene is specifically controlled by lipid raft-anchored Ras. Furthermore, only 9 genes are exclusive for Ras signals from endomembranes. Also, we have identified 31 genes common to the site-specific Ras subsignals capable of inducing cellular transformation. Among these are the genes coding for Vitamin D receptor and for p120-GAP and we have assessed their impact in Ras-induced transformation. Overall, this report reveals the complexity and variability of the different genetic programs orchestrated by Ras from its main sublocalizations.

摘要

Ras蛋白分布于不同的质膜微结构域和内膜中。Ras在其中产生的生化信号在质和量上都有所不同,但这种空间变异性对由Ras开启的遗传程序的影响程度尚不清楚。我们利用微阵列技术在选择性地拴系于不同细胞微环境的表达H-RasV12的NIH3T3细胞中鉴定定位特异性Ras亚信号的转录靶点。我们报告说,位点特异性Ras激活产生的转录组显示出显著的重叠。然而,每个Ras亚信号也能发现不同的基因特征。我们的分析揭示了121个由质膜微结构域发出的Ras信号独特调控的基因。有趣的是,没有一个基因是由脂筏锚定的Ras特异性控制的。此外,只有9个基因是内膜Ras信号所特有的。而且,我们已经鉴定出31个位点特异性Ras亚信号共有的能够诱导细胞转化的基因。其中包括编码维生素D受体和p120-GAP的基因,并且我们已经评估了它们在Ras诱导的转化中的作用。总体而言,本报告揭示了Ras在其主要亚定位所编排的不同遗传程序的复杂性和变异性。

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