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首页> 外文期刊>RNA >Ribosomal proteins L7 and L8 function in concert with six A 3 assembly factors to propagate assembly of domains I and II of 25S rRNA in yeast 60S ribosomal subunits
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Ribosomal proteins L7 and L8 function in concert with six A 3 assembly factors to propagate assembly of domains I and II of 25S rRNA in yeast 60S ribosomal subunits

机译:核糖体蛋白L7和L8与六个A 3装配因子协同作用,以在酵母60S核糖体亚基中传播25S rRNA的结构域I和II的装配

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Ribosome biogenesis is a complex multistep process that involves alternating steps of folding and processing of pre-rRNAs in concert with assembly of ribosomal proteins. Recently, there has been increased interest in the roles of ribosomal proteins in eukaryotic ribosome biogenesis in vivo, focusing primarily on their function in pre-rRNA processing. However, much less is known about participation of ribosomal proteins in the formation and rearrangement of preribosomal particles as they mature to functional subunits. We have studied ribosomal proteins L7 and L8, which are required for the same early steps in pre-rRNA processing during assembly of 60S subunits but are located in different domains within ribosomes. Depletion of either leads to defects in processing of 27SA 3 to 27SB pre-rRNA and turnover of pre-rRNAs destined for large ribosomal subunits. A specific subset of proteins is diminished from these residual assembly intermediates: six assembly factors required for processing of 27SA 3 pre-rRNA and four ribosomal proteins bound to domain I of 25S and 5.8S rRNAs surrounding the polypeptide exit tunnel. In addition, specific sets of ribosomal proteins are affected in each mutant: In the absence of L7, proteins bound to domain II, L6, L14, L20, and L33 are greatly diminished, while proteins L13, L15, and L36 that bind to domain I are affected in the absence of L8. Thus, L7 and L8 might establish RNP structures within assembling ribosomes necessary for the stable association and function of the A3 assembly factors and for proper assembly of the neighborhoods containing domains I and II.
机译:核糖体的生物发生是一个复杂的多步骤过程,涉及与核糖体蛋白的组装协同进行的前rRNA折叠和加工的交替步骤。最近,人们对核糖体蛋白在真核生物体内的生物发生中的作用越来越感兴趣,主要集中在核糖体蛋白在前rRNA加工中的功能。然而,关于核糖体蛋白参与核糖体蛋白成熟和功能性亚基的形成和重排的参与了解甚少。我们已经研究了核糖体蛋白L7和L8,它们是60S亚基组装过程中rRNA前加工中相同的早期步骤所必需的,但它们位于核糖体中的不同域中。任一种的消耗都会导致27SA 3至27SB pre-rRNA的加工过程中的缺陷以及预定用于大型核糖体亚基的pre-rRNA的转换。从这些残留的装配中间体中减少了一个特定的蛋白质子集:加工27SA 3 pre-rRNA所需的六个装配因子,以及与多肽25%出口通道周围的25S和5.8S rRNA的结构域I结合的四个核糖体蛋白。此外,在每个突变体中,特定的核糖体蛋白组也会受到影响:在没有L7的情况下,与结构域II,L6,L14,L20和L33结合的蛋白会大大减少,而与结构域结合的蛋白L13,L15和L36没有L8,我会受到影响。因此,L7和L8可能会在组装核糖体中建立RNP结构,这对于A3组装因子的稳定结合和功能以及包含域I和II的邻域的正确组装是必需的。

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