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Universal and domain-specific sequences in 23S-28S ribosomal RNA identified by computational phylogenetics

机译:通过计算系统发育学鉴定23S-28S核糖体RNA中的通用序列和结构域特异性序列

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摘要

Comparative analysis of ribosomal RNA (rRNA) sequences has elucidated phylogenetic relationships. However, this powerful approach has not been fully exploited to address ribosome function. Here we identify stretches of evolutionarily conserved sequences, which correspond with regions of high functional importance. For this, we developed a structurally aligned database, FLORA (full-length organismal rRNA alignment) to identify highly conserved nucleotide elements (CNEs) in 23S-28S rRNA from each phylogenetic domain (Eukarya, Bacteria, and Archaea). Universal CNEs (uCNEs) are conserved in sequence and structural position in all three domains. Those in regions known to be essential for translation validate our approach. Importantly, some uCNEs reside in areas of unknown function, thus identifying novel sequences of likely great importance. In contrast to uCNEs, domain-specific CNEs (dsCNEs) are conserved in just one phylogenetic domain. This is the first report of conserved sequence elements in rRNA that are domain-specific; they are largely a eukaryotic phenomenon. The locations of the eukaryotic dsCNEs within the structure of the ribosome suggest they may function in nascent polypeptide transit through the ribosome tunnel and in tRNA exit from the ribosome. Our findings provide insights and a resource for ribosome function studies.
机译:核糖体RNA(rRNA)序列的比较分析阐明了系统发育关系。但是,这种强大的方法尚未得到充分利用来解决核糖体功能。在这里,我们确定了进化上保守的序列,这些序列对应于具有重要功能的区域。为此,我们开发了一个结构上对齐的数据库FLORA(全长有机体rRNA序列),以鉴定来自每个系统发育域(真核生物,细菌和古细菌)的23S-28S rRNA中的高度保守的核苷酸元件(CNE)。通用CNE(uCNE)在所有三个域中的序列和结构位置均保守。那些对翻译至关重要的地区的人证实了我们的方法。重要的是,某些uCNE位于功能未知的区域,因此识别出可能具有重要意义的新序列。与uCNE相比,域特异性CNE(dsCNE)仅在一个系统发育域中保守。这是关于rRNA中结构域特异性的保守序列元素的首次报道。它们主要是真核现象。真核生物dsCNEs在核糖体结构中的位置表明它们可能在新生多肽通过核糖体通道的转运中以及在tRNA从核糖体出口的转运中发挥作用。我们的发现为核糖体功能研究提供了见识和资源。

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