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A second base pair interaction between U3 small nucleolar RNA and the 5′-ETS region is required for early cleavage of the yeast pre-ribosomal RNA

机译:U3小核仁RNA和5'-ETS区之间的第二个碱基对相互作用是酵母核糖体前RNA的早期切割所必需的

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摘要

In eukaryotes, U3 snoRNA is essential for pre-rRNA maturation. Its 5′-domain was found to form base pair interactions with the 18S and 5′-ETS parts of the pre-rRNA. In Xenopus laevis, two segments of U3 snoRNA form base-pair interactions with the 5′-ETS region and only one of them is essential to the maturation process. In Saccharomyces cerevisiae, two similar U3 snoRNA–5′ ETS interactions are possible; but, the functional importance of only one of them had been tested. Surprisingly, this interaction, which corresponds to the non-essential one in X. laevis, is essential for cell growth and pre-rRNA maturation in yeast. In parallel with [Dutca et al. (2011) The initial U3 snoRNA:pre-rRNA base pairing interaction required for pre-18S rRNA folding revealed by in vivo chemical probing. Nucleic Acids Research, 39, 5164–5180], here we show, that the second possible 11-bp long interaction between the 5′ domain of S. cerevisiae U3 snoRNA and the pre-rRNA 5′-ETS region (helix VI) is also essential for pre-rRNA processing and cell growth. Compensatory mutations in one-half of helix VI fully restored cell growth. Only a partial restoration of growth was obtained upon extension of compensatory mutations to the entire helix VI, suggesting sequence requirement for binding of specific proteins. Accordingly, we got strong evidences for a role of segment VI in the association of proteins Mpp10, Imp4 and Imp3.
机译:在真核生物中,U3 snoRNA对于rRNA之前的成熟至关重要。发现其5'结构域与pre-rRNA的18S和5'-ETS部分形成碱基对相互作用。在非洲爪蟾中,U3 snoRNA的两个片段与5'-ETS区域形成碱基对相互作用,而其中只有一个对成熟过程至关重要。在酿酒酵母中,两种相似的U3 snoRNA-5'ETS相互作用是可能的。但是,只测试了其中一个的功能重要性。出乎意料的是,这种相互作用对应于X. laevis中的非必需相互作用,对于酵母中的细胞生长和rRNA的前成熟至关重要。与[Dutca et al。 (2011)体内化学探测揭示了18S前rRNA折叠所需的初始U3 snoRNA:r-rRNA碱基配对相互作用。 [Nucleic Acids Research,39,5164-5180],我们在这里显示,酿酒酵母U3 snoRNA的5'结构域与pre-rRNA 5'-ETS区域(螺旋VI)之间的第二个可能的11 bp长相互作用是对于rRNA前加工和细胞生长也很重要。六分之一螺旋VI中的补偿性突变完全恢复了细胞生长。当补偿性突变延伸至整个螺旋VI时,仅获得部分恢复生长,提示结合特定蛋白质需要序列。因此,我们获得了强有力的证据,证明了第六节在蛋白质Mpp10,Imp4和Imp3的缔合中的作用。

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