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Accumulation of H/ACA snoRNPs depends on the integrity of the conserved central domain of the RNA-bind protein Nhp2p

机译:H / ACA snoRNP的积累取决于RNA结合蛋白Nhp2p保守中心域的完整性

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Box H/ACA small nucleolar ribonucleoprotein particles (H/ACA snoRNPs) play key roles in the synthesis of eukaryotic ribosomes. How box H/ACA snoRNPs are assembled remains unknown. Here we show that yeast Nhp2p, a core component of these particles, directly binds RNA. In vitro, Nhp2p interacts with high affinity with RNAs containing irregular stem-loop structures but shows weak affinity for poly(A), poly(C) or for double-stranded RNAs. The central region of Nhp2p is believed to function as an RNA-binding domain, since it is related to motifs found in various RNA-binding proteins. Removal of two amino acids that shortens a putative β-strand element within Nhp2p central domain impairs the ability of the protein to interact with H/ACA snoRNAs in cell extracts. In vivo, this deletion prevents cell viability and leads to a strong defect in the accumulation of H/ACA snoRNA and Gar1p. These data suggest that proper direct binding of Nhp2p to H/ACA snoRNAs is required for the assembly of H/ACA snoRNPs and hence for the stability of some of their components. In addition, we show that converting a highly conserved glycine residue (G_(59)) within Nhp2p central domain to glutamate significantly reduces cell growth at 30 and 37 ℃. Remarkably, this modification affects the steady-state levels of H/ACA snoRNAs and the strength of Nhp2p association with these RNAs to varying degrees, depending on the nature of the H/ACA snorRNA. Finally, we show that the modified Nhp2p protein whose interaction with H/ACA snoRNAs is impaired cannot accumulate in the nucleolus, suggesting that only the assembled H/ACA snoRNP particles can be efficiently retained in the nucleolus.
机译:框H / ACA小核仁核糖核蛋白颗粒(H / ACA snoRNPs)在真核生物核糖体的合成中起关键作用。盒式H / ACA snoRNP的组装方式仍然未知。在这里,我们显示了酵母Nhp2p(这些颗粒的核心成分)直接结合RNA。在体外,Nhp2p与含有不规则茎环结构的RNA相互作用高,但对聚(A),聚(C)或双链RNA的亲和力较弱。 Nhp2p的中央区域被认为具有RNA结合结构域的功能,因为它与各种RNA结合蛋白中的基序有关。去除缩短Nhp2p中央结构域中假定的β链元件的两个氨基酸会损害蛋白质与细胞提取物中H / ACA snoRNA相互作用的能力。在体内,这种缺失会阻止细胞活力,并导致H / ACA snoRNA和Gar1p积累的严重缺陷。这些数据表明,Nhp2p与H / ACA snoRNA的正确直接结合对于H / ACA snoRNP的组装是必需的,因此对于某些组件的稳定性也是必需的。此外,我们表明,将Nhp2p中央结构域中高度保守的甘氨酸残基(G_(59))转换为谷氨酸,可显着降低30和37℃时的细胞生长。值得注意的是,取决于H / ACA snorRNA的性质,这种修饰会在不同程度上影响H / ACA snoRNA的稳态水平以及Nhp2p与这些RNA缔合的强度。最后,我们表明与H / ACA snoRNAs相互作用受损的修饰Nhp2p蛋白不能在核仁中积聚,这表明只有组装好的H / ACA snoRNP颗粒才能有效地保留在核仁中。

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