首页> 外文期刊>Nucleic Acids Research >Binding of L7Ae protein to the K-turn of archaeal snoRNAs: a shared RNA binding motif for C/D and H/ACA box snoRNAs in Archaea
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Binding of L7Ae protein to the K-turn of archaeal snoRNAs: a shared RNA binding motif for C/D and H/ACA box snoRNAs in Archaea

机译:L7Ae蛋白与古细菌snoRNA的K-turn结合:古细菌中C / D和H / ACA盒snoRNA的共享RNA结合基序

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Small nucleolar RNAs (designated as snoRNAs in Eukarya or sRNAs in Archaea) can be grouped into H/ACA or C/D box snoRNA (sRNA) subclasses. In Eukarya, H/ACA snoRNAs assemble into a ribo-nucleoprotein (RNP) complex comprising four proteins: Cbf5p, Gra1p, Nop10p and Nhp2p. A homolog for the Nhp2p protein has not been identified within archeal H/ACA RNPs thus far, while potential orthologs have been identified for the other three proteins. Nhp2p is related, particularly in the middle portion of the protein sequence, to the archaeal ribosomal protein and C/D box protein L7Ae. This finding suggests that L7Ae may be able to substitute for the Nhp2p protein in archaeal H/ACA sRNAs. By band shift assays, we have analyzed in vitro the interaction between H/ACA box sRNAs and protein L7Ae from the archaeon Archaeoglobus fulgidus. We present evidence that L7Ae forms specific complexes with three different H/ACA sRNAs, designated as Afu-4, Afu-46 and Afu-190 with an apparent K_d ranging from 28 to 100 nM. By chemical and enzymatic probing we show that distinct bases located within bulges or loops of H/ACA sRNAs interact with the L7Ae protein. These findings are corroborated by mutational analysis of the L7Ae binding site. Thereby, the RNA motif required for L7Ae binding exhibits a structure, designated as the K-turn, which is present in all C/D box sRNAs. We also identified four H/ACA RNAs from the archaeal species Pyrococcus which exhibit the K-turn motif at a similar position in their structure. These findings suggest a triple role for L7Ae protein in Archaea, e.g. in ribosomes as well as H/ACA and C/D box sRNP biogenesis and function by binding to the K-turn motif.
机译:小型核仁RNA(在Eukarya中称为snoRNA或在古细菌中称为sRNA)可分为H / ACA或C / D box snoRNA(sRNA)子类。在Eukarya中,H / ACA snoRNA组装成核糖核蛋白(RNP)复合物,该复合物包含四种蛋白质:Cbf5p,Gra1p,Nop10p和Nhp2p。到目前为止,尚未在原始H / ACA RNPs中鉴定出Nhp2p蛋白的同源物,而对其他三种蛋白也鉴定出了潜在的直系同源物。 Nhp2p与古细菌核糖体蛋白和C / D盒蛋白L7Ae有关,特别是在蛋白序列的中间。这一发现表明,L7Ae可能能够替代古细菌H / ACA sRNA中的Nhp2p蛋白。通过带移分析,我们已经在体外分析了古细菌古细菌H / ACA box sRNA和蛋白质L7Ae之间的相互作用。我们提供的证据表明,L7Ae与三种不同的H / ACA sRNA形成特异性复合物,命名为Afu-4,Afu-46和Afu-190,表观K_d范围为28至100 nM。通过化学和酶促探测,我们显示出位于H / ACA sRNA凸起或环内的独特碱基与L7Ae蛋白相互作用。 L7Ae结合位点的突变分析证实了这些发现。因此,L7Ae结合所需的RNA基序显示出存在于所有C / D盒sRNA中的称为K-turn的结构。我们还从古细菌火球菌中鉴定了四个H / ACA RNA,它们在其结构的相似位置处表现出K转角基序。这些发现表明L7Ae蛋白在古细菌中具有三重作用。核糖体中的H-ACA和C / D盒中的sRNP的生物发生和功能通过与K-turn基序结合而起作用。

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