Shin Sook, Janknecht Ralf
Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, Minnesota 55905, USA.
J Cell Biochem. 2007 Aug 1;101(5):1252-65. doi: 10.1002/jcb.21250.
A scarcely studied and under-recognized feature of RNA helicases is their ability to regulate gene transcription. In particular, very little is known about the role of p72 RNA helicase in gene regulation. Here, we have analyzed how this helicase may enhance promoter activity. We demonstrate that p72 RNA helicase forms complexes with the homologous coactivators p300 and CBP in vitro and in vivo, especially leading to an enhancement of the transactivation potential of their C-termini. In addition, we show that the p300/CBP-associated protein (P/CAF) also interacts with p72 RNA helicase, and both this interaction and the binding to p300/CBP are mediated by the N-terminal 63 amino acids of p72 RNA helicase. p300, P/CAF and p72 RNA helicase synergize to stimulate selected promoters, including the Mdm2 one. Notably, downregulation of p72 RNA helicase leads to reduced Mdm2 transcription. Furthermore, our data suggest that p72 RNA helicase activates the Mdm2 promoter in a p53 dependent and independent manner. Collectively, our results have unraveled a mechanism of how p72 RNA helicase can regulate gene transcription, namely by cooperating with p300/CBP and P/CAF. Thereby, p72 RNA helicase may not only be involved in the p53-Mdm2 regulatory loop, but also profoundly impact on the transcriptome through various CBP/p300 and P/CAF interacting proteins.
RNA解旋酶一个几乎未被研究且未得到充分认识的特性是它们调节基因转录的能力。特别是,关于p72 RNA解旋酶在基因调控中的作用知之甚少。在此,我们分析了这种解旋酶如何增强启动子活性。我们证明,p72 RNA解旋酶在体外和体内与同源共激活因子p300和CBP形成复合物,尤其导致其C末端的反式激活潜能增强。此外,我们表明p300/CBP相关蛋白(P/CAF)也与p72 RNA解旋酶相互作用,并且这种相互作用以及与p300/CBP的结合均由p72 RNA解旋酶的N末端63个氨基酸介导。p300、P/CAF和p72 RNA解旋酶协同刺激包括Mdm2启动子在内的选定启动子。值得注意的是,p72 RNA解旋酶的下调导致Mdm2转录减少。此外,我们的数据表明p72 RNA解旋酶以p53依赖和独立的方式激活Mdm2启动子。总体而言,我们的结果揭示了p72 RNA解旋酶如何调节基因转录的机制,即通过与p300/CBP和P/CAF合作。因此,p72 RNA解旋酶不仅可能参与p53-Mdm2调控环,还可能通过各种与CBP/p300和P/CAF相互作用的蛋白质对转录组产生深远影响。