Berenjeno Inmaculada M, Bustelo Xose R
Centro de Investigación del Cáncer and Instituto de Biología Molecular y Celular del Cáncer (IBMCC), CSIC - University of Salamanca, Campus Unamuno, Salamanca, Spain.
Clin Transl Oncol. 2008 Nov;10(11):726-38. doi: 10.1007/s12094-008-0279-5.
Rock proteins are Rho GTPase-dependent serine/ threonine kinases with crucial roles in F-actin dynamics and cell transformation. By analogy with other protein kinase families, it can be assumed that Rock proteins act, at least in part, through the regulation of gene expression events. However, with the exception of some singular transcriptional targets recently identified, the actual impact of these kinases on the overall cell transcriptome remains unknown. To address this issue, we have used a microarray approach to compare the transcriptomes of exponentially growing NIH3T3 cells that had been untreated or treated with Y27632, a well known specific inhibitor for Rock kinase activity. We show here that the Rock pathway promotes a weak impact on the fibroblast transcriptome, since its inhibition only results in changes in the expression of 2.3% of all the genes surveyed in the microarrays. Most Y27632-dependent genes are downregulated at moderate levels, indicating that the Rock pathway predominantly induces the upregulation of transcriptionally active genes. Although functionally diverse, a common functional leitmotiv of Y27632-dependent genes is the implication of their protein products in cytoskeletal-dependent processes. Taken together, these results indicate that Rock proteins can modify cytoskeletal dynamics by acting at post-transcriptional and transcriptional levels. In addition, they suggest that the main target of these serine/threonine kinases is the phosphoproteome and not the transcriptome.
Rock蛋白是Rho GTP酶依赖性丝氨酸/苏氨酸激酶,在F-肌动蛋白动力学和细胞转化中起关键作用。与其他蛋白激酶家族类似,可以推测Rock蛋白至少部分地通过调节基因表达事件发挥作用。然而,除了最近发现的一些个别转录靶点外,这些激酶对整个细胞转录组的实际影响仍然未知。为了解决这个问题,我们使用微阵列方法比较了指数生长的NIH3T3细胞的转录组,这些细胞未处理或用Y27632处理,Y27632是一种众所周知的Rock激酶活性特异性抑制剂。我们在此表明,Rock途径对成纤维细胞转录组的影响较弱,因为其抑制仅导致微阵列中所有检测基因的2.3%的表达发生变化。大多数Y27632依赖性基因在中等水平下调,表明Rock途径主要诱导转录活性基因的上调。尽管功能多样,但Y27632依赖性基因的一个共同功能主旨是其蛋白质产物参与细胞骨架依赖性过程。综上所述,这些结果表明Rock蛋白可以通过在转录后和转录水平发挥作用来改变细胞骨架动力学。此外,它们表明这些丝氨酸/苏氨酸激酶的主要靶点是磷酸化蛋白质组而不是转录组。