首页> 外文期刊>Nucleic acids research >Two 5′-ETS regions implicated in interactions with U3 snoRNA are required for small subunit rRNA maturation in Trypanosoma brucei
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Two 5′-ETS regions implicated in interactions with U3 snoRNA are required for small subunit rRNA maturation in Trypanosoma brucei

机译:布氏锥虫小亚基rRNA成熟需要两个与U3 snoRNA相互作用的5'-ETS区

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Early pre-rRNA processing events were examined in the ancient protozoan parasite Trypanosoma brucei and found to have both distinctive and conserved features. Two 5′-ETS cleavages occur: A′ and the newly discovered AO. A′ and AO appear related to vertebrate and yeast primary pre-RNA cleavage sites, respectively. However, trypanosomatid primary rRNA transcripts can first be processed at the ITS1/ 5.8S boundary and 5′-ETS sequences then removed by consecutive cleavages at A′, AO and A1 at the 5′-ETS/ SSU rRNA junction. 5′-ETS sequences previously crosslinked to U3 snoRNA were tested for their roles in rRNA processing using our new tagged rRNA system. Two distinct A′-adjacent sequence elements, which may pair with U3 hinge bases, were specifically required for SSU rRNA production, as was a downstream element. The latter element appears conserved with the yeast 5′-ETS U3 binding sequence, required for AO, A1 and A2 cleavages, in that they both share 10 bases complementary with U3 hinge sequences and lie uPstream from AO and A1 sites located in a potential stem-loop structure. The distinctive positioning of putative trypanosomatid U3 binding sites with respect to A′ and AO cleavages suggests that different U3-dependent mechanisms may direct each processing event.
机译:在古老的原生动物寄生虫锥虫Trypanosoma brucei中检查了早期的rRNA加工事件,发现它们既具有鲜明的特征又具有保守的特征。发生两个5'-ETS裂解:A'和新发现的AO。 A'和AO分别与脊椎动物和酵母的一级前RNA切割位点有关。但是,锥虫原代rRNA转录本可以首先在ITS1 / 5.8S边界和5'-ETS序列上进行处理,然后通过在5'-ETS / SSU rRNA交界处在A',AO和A1处的连续切割来去除。使用我们新的标记rRNA系统,对先前与U3 snoRNA交联的5'-ETS序列在rRNA加工中的作用进行了测试。 SSU rRNA生产特别需要两个不同的邻近A'序列元素,可以与U3铰链碱基配对,下游元素也是如此。后者与AO,A1和A2裂解所需的酵母5'-ETS U3结合序列似乎是保守的,因为它们都共享与U3铰链序列互补的10个碱基,并且位于潜在茎中的AO和A1位点具有uPstream环结构。假定的锥体虫U3结合位点相对于A'和AO裂解的独特定位表明,不同的U3依赖机制可能指导每个加工事件。

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