Institute of Molecular Biosciences, Institute of Biophysical Chemistry, Center for Biomolecular Magnetic Resonance, and Cluster of Excellence "Macromolecular Complexes," Johann-Wolfgang-Goethe-Universität, 60438 Frankfurt am Main, Germany.
Proc Natl Acad Sci U S A. 2013 Sep 17;110(38):15253-8. doi: 10.1073/pnas.1306389110. Epub 2013 Sep 3.
Factor activating Pos9 (Fap7) is an essential ribosome biogenesis factor important for the assembly of the small ribosomal subunit with an uncommon dual ATPase and adenylate kinase activity. Depletion of Fap7 or mutations in its ATPase motifs lead to defects in small ribosomal subunit rRNA maturation, the absence of ribosomal protein Rps14 from the assembled subunit, and retention of the nascent small subunit in a quality control complex with the large ribosomal subunit. The molecular basis for the role of Fap7 in ribosome biogenesis is, however, not yet understood. Here we show that Fap7 regulates multiple interactions between the precursor rRNA, ribosomal proteins, and ribosome assembly factors in a hierarchical manner. Fap7 binds to Rps14 with a very high affinity. Fap7 binding blocks both rRNA-binding elements of Rps14, suggesting that Fap7 inhibits premature interactions of Rps14 with RNA. The Fap7/Rps14 interaction is modulated by nucleotide binding to Fap7. Rps14 strongly activates the ATPase activity but not the adenylate kinase activity of Fap7, identifying Rps14 as an example of a ribosomal protein functioning as an ATPase-activating factor. In addition, Fap7 inhibits the RNA cleavage activity of Nob1, the endonuclease responsible for the final maturation step of the small subunit rRNA, in a nucleotide independent manner. Thus, Fap7 may regulate small subunit biogenesis at multiple stages.
因子激活蛋白 9(Fap7)是一种必需的核糖体生物发生因子,对于小核糖体亚基的组装具有重要作用,其具有不常见的双 ATP 酶和腺苷酸激酶活性。Fap7 的缺失或其 ATP 酶基序的突变导致小核糖体亚基 rRNA 成熟缺陷,组装亚基中缺乏核糖体蛋白 Rps14,新生小亚基与大亚基保留在质量控制复合物中。然而,Fap7 在核糖体生物发生中的作用的分子基础尚不清楚。在这里,我们表明 Fap7 以分级的方式调节前体 rRNA、核糖体蛋白和核糖体组装因子之间的多种相互作用。Fap7 与 Rps14 具有非常高的亲和力结合。Fap7 结合阻止了 Rps14 的两个 rRNA 结合元件,表明 Fap7 抑制了 Rps14 与 RNA 的过早相互作用。Fap7/Rps14 相互作用受 Fap7 核苷酸结合的调节。Rps14 强烈激活 Fap7 的 ATP 酶活性但不激活其腺苷酸激酶活性,将 Rps14 鉴定为一种作为 ATP 酶激活因子起作用的核糖体蛋白的例子。此外,Fap7 以核苷酸非依赖性方式抑制 Nob1 的 RNA 切割活性,Nob1 是负责小亚基 rRNA 最后成熟步骤的内切核酸酶。因此,Fap7 可能在多个阶段调节小亚基生物发生。