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

机译:H / ACA的累积 snoRNP取决于保守的中央域的完整性 结合蛋白Nhp2p的合成

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摘要

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 snoRNAs 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 (G59) within Nhp2p central domain to glutamate significantly reduces cell growth at 30 and 37°C. 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 snoRNA. 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poly(A),poly(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 snoRNP正确地直接结合对于H / ACA snoRNP的组装是必需的,因此也需要它们某些成分的稳定性。此外,我们表明,将Nhp2p中央域内的高度保守的甘氨酸残基(G59)转换为谷氨酸,可显着降低30和37°C下的细胞生长。值得注意的是,取决于H / ACA snoRNA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蛋白无法在核仁中积聚,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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