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Ribosomal proteins' association with transcription sites peaks at tRNA genes in Schizosaccharomyces pombe.

机译:核糖体蛋白与转录位点的关联在粟酒裂殖酵母的tRNA基因上达到峰值。

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Ribosomal proteins (RPs) are essential components of ribosomes, but several RPs are also present at transcription sites of eukaryotic chromosomes. Here, we report a genome-wide ChIP-on-chip analysis of the association of three representative 60S RPs with sites in the Schizosaccharomyces pombe chromosomes. All three proteins tend to bind at the same subset of coding and noncoding loci. The data demonstrate selective RNA-dependent interactions between RPs and many transcription sites and suggest that the RPs bind as components of a preassembled multiprotein complex, perhaps 60S or pre-60S subunits. These findings further indicate that the presence of RPs complexes at transcription sites might be a general feature of eukaryotic cells and functionally important. Unexpectedly, the RPs' chromosomal association is highest at centromeres and tRNA genes-the RPs were found at 167 of the 171 tRNA genes assayed. These findings raise the intriguing possibility that RP complexes are involved in tRNA biogenesis and possibly centromere functions.
机译:核糖体蛋白(RPs)是核糖体的重要组成部分,但在真核染色体的转录位点也存在一些RPs。在这里,我们报告了全基因组芯片上芯片分析的三个代表性60S RPs与粟酒裂殖酵母染色体中的位点的关联。所有这三种蛋白质倾向于结合在编码和非编码基因座的相同子集上。数据证明了RP和许多转录位点之间的选择性RNA依赖性相互作用,并表明RP作为预先组装的多蛋白复合物(也许是60S或60S以前的亚基)的成分结合。这些发现进一步表明,在转录位点存在RP复合物可能是真核细胞的一般特征,并且在功能上很重要。出乎意料的是,RPs的染色体缔合在着丝粒和tRNA基因处最高-在所检测的171种tRNA基因中的167种中发现了RPs。这些发现提出了RP复合物参与tRNA生物发生和着丝粒功能的有趣的可能性。

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