Wells Graeme R, Weichmann Franziska, Sloan Katherine E, Colvin David, Watkins Nicholas J, Schneider Claudia
Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle upon Tyne, NE2 4HH, UK.
Nucleic Acids Res. 2017 May 5;45(8):4796-4809. doi: 10.1093/nar/gkw1344.
Two proteins with PIN endonuclease domains, yUtp24(Fcf1)/hUTP24 and yUtp23/hUTP23 are essential for early pre-ribosomal (r)RNA cleavages at sites A0, A1/1 and A2/2a in yeast and humans. The yUtp24/hUTP24 PIN endonuclease is proposed to cleave at sites A1/1 and A2/2a, but the enzyme cleaving at site A0 is not known. Yeast yUtp23 contains a degenerate, non-essential PIN domain and functions together with the snR30 snoRNA, while human hUTP23 is associated with U17, the human snR30 counterpart. Using in vivo RNA-protein crosslinking and gel shift experiments, we reveal that yUtp23/hUTP23 makes direct contacts with expansion sequence 6 (ES6) in the 18S rRNA sequence and that yUtp23 interacts with the 3΄ half of the snR30 snoRNA. Protein-protein interaction studies further demonstrated that yeast yUtp23 and human hUTP23 directly interact with the H/ACA snoRNP protein yNhp2/hNHP2, the RNA helicase yRok1/hROK1(DDX52), the ribosome biogenesis factor yRrp7/hRRP7 and yUtp24/hUTP24. yUtp23/hUTP23 could therefore be central to the coordinated integration and release of ES6 binding factors and likely plays a pivotal role in remodeling this pre-rRNA region in both yeast and humans. Finally, studies using RNAi-rescue systems in human cells revealed that intact PIN domain and Zinc finger motifs in human hUTP23 are essential for 18S rRNA maturation.
两种具有PIN核酸内切酶结构域的蛋白质,即酵母中的yUtp24(Fcf1)/hUTP24和yUtp23/hUTP23,对于酵母和人类中前核糖体(r)RNA在A0、A1/1和A2/2a位点的早期切割至关重要。有人提出yUtp24/hUTP24 PIN核酸内切酶在A1/1和A2/2a位点进行切割,但目前尚不清楚在A0位点进行切割的酶是什么。酵母yUtp23含有一个退化的、非必需的PIN结构域,并与snR30 snoRNA共同发挥作用,而人类hUTP23则与人类snR30的对应物U17相关联。通过体内RNA-蛋白质交联和凝胶迁移实验,我们发现yUtp23/hUTP23与18S rRNA序列中的扩展序列6(ES6)直接接触,并且yUtp23与snR30 snoRNA的3΄端相互作用。蛋白质-蛋白质相互作用研究进一步表明,酵母yUtp23和人类hUTP23与H/ACA snoRNP蛋白yNhp2/hNHP2、RNA解旋酶yRok1/hROK1(DDX52)、核糖体生物发生因子yRrp7/hRRP7以及yUtp24/hUTP24直接相互作用。因此,yUtp23/hUTP23可能是ES6结合因子协调整合和释放的核心,并且可能在酵母和人类中对该前rRNA区域的重塑起着关键作用。最后,在人类细胞中使用RNA干扰拯救系统的研究表明,人类hUTP23中完整的PIN结构域和锌指基序对于18S rRNA的成熟至关重要。