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Archaeal Pus10 proteins can produce both pseudouridine 54 and 55 in tRNA

机译:古细菌Pus10蛋白可在tRNA中同时产生假尿苷54和55

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摘要

Pus10, a recently identified pseudouridine (Ψ) synthase, does not belong to any of the five commonly identified families of Ψ synthases. Pyrococcus furiosus Pus10 has been shown to produce Ψ55 in tRNAs. However, in vitro studies have identified another mechanism for tRNA Ψ55 production in Archaea, which uses Cbf5 and other core proteins of the H/ACA ribonucleoprotein complex, in a guide RNA-independent manner. Pus10 homologs have been observed in nearly all sequenced archaeal genomes and in some higher eukaryotes, but not in yeast and bacteria. This coincides with the presence of Ψ54 in the tRNAs of Archaea and higher eukaryotes and its absence in yeast and bacteria. No tRNA Ψ54 synthase has been reported so far. Here, using recombinant Methanocaldococcus jannaschii and P. furiosus Pus10, we show that these proteins can function as synthase for both tRNA Ψ54 and Ψ55. The two modifications seem to occur independently. Salt concentration dependent variations in these activities of both proteins are observed. The Ψ54 synthase activity of M. jannaschii protein is robust, while the same activity of P. furiosus protein is weak. Probable reasons for these differences are discussed. Furthermore, unlike bacterial TruB and yeast Pus4, archaeal Pus10 does not require a U54•A58 reverse Hoogstein base pair and pyrimidine at position 56 to convert tRNA U55 to Ψ55. The homology of eukaryal Pus10 with archaeal Pus10 suggests that the former may also have a tRNA Ψ54 synthase activity.
机译:Pus10是最近鉴定出的假尿苷(Ψ)合酶,不属于五个通常鉴定出的Ψ合酶家族中的任何一个。激烈热球菌Pus10已显示在tRNA中产生produce55。但是,体外研究已经确定了古细菌中产生tRNA≥55的另一种机制,该机制以Cbf5和H / ACA核糖核蛋白复合物的其他核心蛋白以不依赖RNA的方式进行引导。在几乎所有测序的古细菌基因组和某些高级真核生物中均观察到Pus10同源物,但在酵母和细菌中未观察到。这与古细菌和高级真核生物的tRNA中s54的存在以及酵母和细菌中不存在absence54的情况相吻合。到目前为止,尚无tRNAΨ54合酶的报道。在这里,我们使用重组詹氏甲烷球菌和狂热假单胞菌Pus10,证明这些蛋白质可同时充当tRNAΨ54和Ψ55的合酶。这两个修改似乎是独立发生的。观察到两种蛋白质的这些活性的盐浓度依赖性变化。詹氏甲烷球菌蛋白的Ψ54合酶活性很强,而相同的狂热疟原虫蛋白的活性却很弱。讨论了造成这些差异的可能原因。此外,与细菌TruB和酵母Pus4不同,古细菌Pus10不需要U54•A58反向Hoogstein碱基对和位置56的嘧啶即可将tRNA U55转化为Ψ55。真核Pus10与古细菌Pus10的同源性表明前者也可能具有tRNARNA54合酶活性。

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