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Noc4p 的 Noc 结构域包含 C 末端,介导 Noc4p-Nop14p 亚基的形成及其掺入到 SSU 加工体。

The Noc-domain containing C-terminus of Noc4p mediates both formation of the Noc4p-Nop14p submodule and its incorporation into the SSU processome.

机构信息

Institut für Biochemie, Genetik und Mikrobiologie, University of Regensburg, Regensburg, Germany.

出版信息

PLoS One. 2009 Dec 18;4(12):e8370. doi: 10.1371/journal.pone.0008370.

Abstract

Noc1p, Noc3p and Noc4p are eukaryotic proteins which play essential roles in yeast ribosome biogenesis and contain a homologous stretch of about 45 aminoacids (Noc-domain) of unknown function. Yeast Noc4p is a component of the small ribosomal subunit (SSU) processome, can be isolated as a stable Noc4p-Nop14p SSU-processome submodule from yeast cells, and is required for nuclear steps of small ribosomal subunit rRNA maturation. We expressed a series of mutated alleles of NOC4 in yeast cells and analysed whether the corresponding protein variants support vegetative growth, interact with Nop14p, and are incorporated into the SSU-processome. The data reveal that the essential C-terminus of Noc4p which contains 237 aminoacids including the Noc-domain represents a protein-protein interaction module. It is required and sufficient for its association with Nop14p and several nuclear precursors of the small ribosomal subunit. The N-terminal Noc4-part seems to be targeted to pre-ribosomes via the C-terminus of Noc4p and plays there an essential role in SSU-processome function. Replacement of the Noc4p-Noc-domain by its homologues Noc1p-counterpart results in a hybrid Noc4p variant which fails to associate with Nop14p and pre-ribosomes. On the other hand, exchange of 6 amino acids in the Noc1-Noc-domain of this hybrid Noc4p protein is sufficient to restore its essential in vivo functions. These data suggest that Noc-domains of Noc1p and Noc4p share a common structural backbone in which diverging amino acids play crucial roles in mediating specific regulated interactions. Our analysis allows us to distinguish between different functions of certain domains within Noc4p and contribute to the understanding of how incorporation of Noc4p into ribosomal precursors is coupled to rRNA processing and maturation of the small ribosomal subunit.

摘要

Noc1p、Noc3p 和 Noc4p 是真核生物蛋白,在酵母核糖体生物发生中发挥重要作用,含有约 45 个氨基酸(Noc 结构域)的同源序列,其功能未知。酵母 Noc4p 是小核糖体亚基(SSU)加工体的组成部分,可从酵母细胞中分离出稳定的 Noc4p-Nop14p SSU-加工体亚模块,并且是小核糖体亚基 rRNA 成熟的核步骤所必需的。我们在酵母细胞中表达了一系列 NOC4 的突变等位基因,并分析了相应的蛋白变体是否支持营养生长、与 Nop14p 相互作用以及是否被整合到 SSU-加工体中。数据表明,包含 Noc 结构域的 237 个氨基酸的 Noc4p 的必需 C 末端代表一个蛋白-蛋白相互作用模块。它是与 Nop14p 和小核糖体亚基的几个核前体结合所必需且充分的。N 末端的 Noc4 部分似乎通过 Noc4p 的 C 末端靶向到前核糖体,并在 SSU-加工体功能中发挥重要作用。用 Noc1p 同源物替换 Noc4p 的 Noc4 结构域会导致杂交 Noc4p 变体无法与 Nop14p 和前核糖体结合。另一方面,交换该杂交 Noc4p 蛋白的 Noc1-Noc 结构域中的 6 个氨基酸足以恢复其必需的体内功能。这些数据表明,Noc1p 和 Noc4p 的 Noc 结构域共享一个共同的结构骨架,其中发散的氨基酸在介导特定的调节相互作用中起着关键作用。我们的分析使我们能够区分 Noc4p 中某些结构域的不同功能,并有助于理解如何将 Noc4p 掺入核糖体前体与 rRNA 加工和小核糖体亚基成熟相偶联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f4/2794458/ac58804187b3/pone.0008370.g001.jpg

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