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酵母中大核糖体亚基最早前体的逐步组装。

Stepwise assembly of the earliest precursors of large ribosomal subunits in yeast.

作者信息

Chen Wu, Xie Zhensheng, Yang Fuquan, Ye Keqiong

机构信息

College of Biological Sciences, China Agricultural University, Beijing 100193, China.

National Institute of Biological Sciences, Beijing 102206, China.

出版信息

Nucleic Acids Res. 2017 Jun 20;45(11):6837-6847. doi: 10.1093/nar/gkx254.

Abstract

Small ribosomal subunits are co-transcriptionally assembled on the nascent precursor rRNA in Saccharomyces cerevisiae. It is unknown how the highly intertwined structure of 60S large ribosomal subunits is initially formed. Here, we affinity purified and analyzed a series of pre-60S particles assembled in vivo on plasmid-encoded pre-rRNA fragments of increasing lengths, revealing a spatiotemporal assembly map for 34 trans-acting assembly factors (AFs), 30 ribosomal proteins and 5S rRNA. The gradual association of AFs and ribosomal proteins with the pre-rRNA fragments strongly supports that the pre-60S is co-transcriptionally, rather than post-transcriptionally, assembled. The internal and external transcribed spacers ITS1, ITS2 and 3΄ ETS in pre-rRNA must be processed in pre-60S. We show that the processing machineries for ITS1 and ITS2 are primarily recruited by the 5΄ and 3΄ halves of pre-27S RNA, respectively. Nevertheless, processing of both ITS1 and ITS2 requires a complete 25S region. The 3΄ ETS plays a minor role in ribosome assembly, but is important for efficient rRNA processing and ribosome maturation. We also identified a distinct pre-60S state occurring before ITS2 processing. Our data reveal the elusive co-transcriptional assembly pathway of large ribosomal subunit.

摘要

在酿酒酵母中,小核糖体亚基在新生的前体rRNA上进行共转录组装。目前尚不清楚60S大核糖体亚基高度交织的结构最初是如何形成的。在这里,我们通过亲和纯化并分析了一系列在体内组装在长度不断增加的质粒编码前体rRNA片段上的60S前体颗粒,揭示了34种反式作用组装因子(AFs)、30种核糖体蛋白和5S rRNA的时空组装图谱。AFs和核糖体蛋白与前体rRNA片段的逐步结合有力地支持了60S前体是共转录组装而非转录后组装的。前体rRNA中的内部和外部转录间隔区ITS1、ITS2和3΄ETS必须在60S前体中进行加工。我们表明,ITS1和ITS2的加工机制分别主要由前27S RNA的5΄和3΄半部分招募。然而,ITS1和ITS2的加工都需要完整的25S区域。3΄ETS在核糖体组装中起次要作用,但对有效的rRNA加工和核糖体成熟很重要。我们还确定了在ITS2加工之前出现的一种独特的60S前体状态。我们的数据揭示了大核糖体亚基难以捉摸的共转录组装途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beff/5499802/a42ec1fdced3/gkx254fig1.jpg

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