Cell Signalling Research Group, Departament de Ciències Experimetals i de la Salut, Universitat Pompeu Fabra, Dr Aiguader 88, 08003 Barcelona, Spain.
J Biol Chem. 2010 Oct 8;285(41):31819-28. doi: 10.1074/jbc.M110.155846. Epub 2010 Aug 3.
In mammals, the stress-activated protein kinase (SAPK) p38 coordinates a rapid and complex transcriptional program to adapt to sudden changes in the extracellular environment. Although a number of genes have been reported to be under the control of p38, the basic mechanisms of transcriptional regulation by this SAPK remain uncharacterized. Here we show that in response to osmotic shock, anisomycin- or TNFα-activated p38 SAPK is recruited to stress-induced genes. The MAPKK MKK6 is also found at stress-responsive promoters. The recruitment of RNA polymerase II complex to the target promoters requires p38 activity. Moreover, when tethered to DNA as a LexA fusion protein, p38 activates transcription in a stress-regulated manner. Thus, p38 activity allows for recruitment of RNA polymerase and transcription initiation. p38 directly phosphorylates and interacts with the transcription factor Elk1. p38 activity is necessary for the recruitment of Elk1 to the c-Fos promoter, and knocking down Elk1 by siRNAs compromises both p38 recruitment to the c-Fos promoter and c-Fos transcriptional up-regulation upon osmostress. In addition, p38 recruitment to the osmoinducible gene Cox2 and the TNFα target gene IL8 is mediated by the transcription factors AP1 and NFκB, respectively. Therefore, anchoring of active SAPK to target genes is mediated by transcription factors. The presence of active p38 at open reading frames also suggests the involvement of the SAPK in elongation. Taken together, SAPK recruitment to target genes appears to be a broad mechanism to regulate transcription that has been preserved from yeast to mammals.
在哺乳动物中,应激激活蛋白激酶(SAPK)p38 协调一个快速而复杂的转录程序,以适应细胞外环境的突然变化。虽然已经报道了许多受 p38 控制的基因,但这种 SAPK 的转录调控的基本机制仍未被阐明。在这里,我们表明,在响应渗透压冲击时,放线菌酮或 TNFα 激活的 p38 SAPK 被募集到应激诱导的基因。MAPKK MKK6 也存在于应激响应启动子上。RNA 聚合酶 II 复合物向靶启动子的募集需要 p38 活性。此外,当作为 LexA 融合蛋白被束缚在 DNA 上时,p38 以应激调节的方式激活转录。因此,p38 活性允许 RNA 聚合酶的募集和转录起始。p38 直接磷酸化并与转录因子 Elk1 相互作用。p38 活性对于 Elk1 募集到 c-Fos 启动子是必需的,并且通过 siRNA 敲低 Elk1 会损害 p38 募集到 c-Fos 启动子以及渗透压应激下 c-Fos 转录的上调。此外,p38 募集到应激诱导基因 Cox2 和 TNFα 靶基因 IL8 分别由转录因子 AP1 和 NFκB 介导。因此,活性 SAPK 到靶基因的锚定是由转录因子介导的。活性 p38 存在于开放阅读框也表明 SAPK 参与延伸。总之,SAPK 募集到靶基因似乎是一种广泛的调节转录的机制,这种机制从酵母到哺乳动物都得到了保留。