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Interrelationships between Yeast Ribosomal Protein Assembly Events and Transient Ribosome Biogenesis Factors Interactions in Early Pre-Ribosomes

机译:酵母核糖体蛋白装配事件和早期核糖体中的瞬时核糖体生物发生因子相互作用之间的相互关系。

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摘要

Early steps of eukaryotic ribosome biogenesis require a large set of ribosome biogenesis factors which transiently interact with nascent rRNA precursors (pre-rRNA). Most likely, concomitant with that initial contacts between ribosomal proteins (r-proteins) and ribosome precursors (pre-ribosomes) are established which are converted into robust interactions between pre-rRNA and r-proteins during the course of ribosome maturation. Here we analysed the interrelationship between r-protein assembly events and the transient interactions of ribosome biogenesis factors with early pre-ribosomal intermediates termed 90S pre-ribosomes or small ribosomal subunit (SSU) processome in yeast cells. We observed that components of the SSU processome UTP-A and UTP-B sub-modules were recruited to early pre-ribosomes independently of all tested r-proteins. On the other hand, groups of SSU processome components were identified whose association with early pre-ribosomes was affected by specific r-protein assembly events in the head-platform interface of the SSU. One of these components, Noc4p, appeared to be itself required for robust incorporation of r-proteins into the SSU head domain. Altogether, the data reveal an emerging network of specific interrelationships between local r-protein assembly events and the functional interactions of SSU processome components with early pre-ribosomes. They point towards some of these components being transient primary pre-rRNA in vivo binders and towards a role for others in coordinating the assembly of major SSU domains.
机译:真核生物核糖体生物发生的早期步骤需要大量与初生rRNA前体(pre-rRNA)相互作用的核糖体生物发生因子。最可能的是,伴随着核糖体蛋白(r蛋白)和核糖体前体(核糖体前体)之间的初始接触被建立,并在核糖体成熟过程中转化为rr蛋白与r蛋白之间的牢固相互作用。在这里,我们分析了r-蛋白装配事件与核糖体生物发生因子与早期核糖体中间体(称为90S核糖体或小核糖体亚基(SSU)酵母菌核)的瞬时相互作用之间的相互关系。我们观察到,SSU加工过程UTP-A和UTP-B子模块的组件独立于所有测试的r蛋白被募集到早期的核糖体中。另一方面,确定了SSU过程组组件的组,这些组与早期核糖体的关联受到SSU头平台界面中特定r蛋白装配事件的影响。这些成分之一Noc4p似乎本身就是将r蛋白牢固掺入SSU头部结构域所必需的。总而言之,数据揭示了新兴的局部r蛋白装配事件与SSU加工组组件与早期核糖体功能相互作用之间的特殊相互关系网络。他们指出,这些成分中的一些是体内瞬时的初级rRNA前结合物,而其他成分则在协调主要SSU结构域的组装中发挥作用。

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