Moir Robyn D, Lee JaeHoon, Haeusler Rebecca A, Desai Neelam, Engelke David R, Willis Ian M
Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, USA.
Proc Natl Acad Sci U S A. 2006 Oct 10;103(41):15044-9. doi: 10.1073/pnas.0607129103. Epub 2006 Sep 27.
Maf1 is an essential and specific mediator of transcriptional repression in the RNA polymerase (pol) III system. Maf1-dependent repression occurs in response to a wide range of conditions, suggesting that the protein itself is targeted by the major nutritional and stress-signaling pathways. We show that Maf1 is a substrate for cAMP-dependent PKA in vitro and is differentially phosphorylated on PKA sites in vivo under normal versus repressing conditions. PKA activity negatively regulates Maf1 function because strains with unregulated high PKA activity block repression of pol III transcription in vivo, and strains lacking all PKA activity are hyperrepressible. Nuclear accumulation of Maf1 is required for transcriptional repression and is regulated by two nuclear localization sequences in the protein. An analysis of PKA phosphosite mutants shows that the localization of Maf1 is affected via the N-terminal nuclear localization sequence. In particular, mutations that prevent phosphorylation at PKA consensus sites promote nuclear accumulation of Maf1 without inducing repression. These results indicate that negative regulation of Maf1 by PKA is achieved by inhibiting its nuclear import and suggest that a PKA-independent activation step is required for nuclear Maf1 to function in the repression of pol III transcription. Finally, we report a previously undescribed phenotype for Maf1 in tRNA gene-mediated silencing of nearby RNA pol II transcription.
Maf1是RNA聚合酶(pol)III系统中转录抑制的关键特异性介导因子。Maf1依赖性抑制在多种条件下都会发生,这表明该蛋白本身是主要营养和应激信号通路的作用靶点。我们发现,Maf1在体外是cAMP依赖性蛋白激酶A(PKA)的底物,在正常与抑制条件下,其在体内PKA作用位点上的磷酸化情况存在差异。PKA活性对Maf1功能起负向调节作用,因为PKA活性不受调控而处于高水平的菌株会在体内阻断pol III转录的抑制,而缺乏所有PKA活性的菌株则具有超抑制性。Maf1的核积累是转录抑制所必需的,且受该蛋白中的两个核定位序列调控。对PKA磷酸化位点突变体的分析表明,Maf1的定位受N端核定位序列影响。特别是,阻止在PKA共有位点磷酸化的突变会促进Maf1的核积累,但不会诱导抑制作用。这些结果表明,PKA对Maf1的负向调节是通过抑制其核输入实现的,这表明核Maf1在抑制pol III转录中发挥作用需要一个不依赖PKA的激活步骤。最后,我们报道了Maf1在tRNA基因介导的附近RNA pol II转录沉默中一种此前未描述的表型。