首页> 外文期刊>Journal of bacteriology >Atypical Processing in Domain III of 23S rRNA of Rhizobium leguminosarum ATCC 10004T at a Position Homologous to an rRNA Fragmentation Site in Protozoa
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Atypical Processing in Domain III of 23S rRNA of Rhizobium leguminosarum ATCC 10004T at a Position Homologous to an rRNA Fragmentation Site in Protozoa

机译:豆科根瘤菌ATCC 10004T的23S rRNA结构域III中与原生动物rRNA片段同源的位置上的非典型处理

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For still unknown reasons, the 23S rRNA of many α-Proteobacteria shows a unique fragmentation pattern compared to other bacteria. The 23S rRNA processing involves RNase III and additional, yet unidentified enzymes. The α-proteobacterium Rhizobium leguminosarum ATCC 10004T possesses two fragmentation sites in its 23S rRNA. The first one harbors an intervening sequence in helix 9 which is cleaved by RNase III. We demonstrate that the mature 5′ end of the resulting 2.6-kb rRNA fragment is generated by additional removal of helix 10. A fraction of the 2.6-kb rRNA is further processed in domain III, giving rise to two 1.3-kb rRNA fragments. We mapped the domain III fragmentation site and found it to be at a position which has only been reported for trypanosomatid protozoa. This fragmentation site is also unique in that it lacks an intervening sequence. We found that the simultaneous occurrence of 2.6-kb and 1.3-kb rRNA fragments is not due to interoperonal sequence differences but rather reflects slow processing. The different characteristics of the two fragmentation sites in the 23S rRNA suggest that they are processed by different mechanisms. Interestingly, the amount of 2.6-kb rRNA varies during culture growth. We observed a transient increase in the relative amount of 2.6-kb rRNA fragments during the first hours after inoculation, which points to changes in the ratio of rRNA synthesis rate to domain III processing rate during the growth of a culture.
机译:由于仍然未知的原因,与其他细菌相比,许多α-变形杆菌的23S rRNA表现出独特的片段化模式。 23S rRNA加工涉及RNase III和其他尚未鉴定的酶。 α-变形杆菌根瘤菌ATCC 10004 T 在其23S rRNA中具有两个片段。第一个在螺旋9中带有一个插入序列,该序列被RNA酶III切割。我们证明了通过额外去除螺旋10产生了产生的2.6-kb rRNA片段的成熟5'端。2.6-kbrRNA的一部分在结构域III中进一步加工,产生了两个1.3-kb rRNA片段。我们绘制了结构域III的片段位点,发现它位于只报道过锥虫原虫的位置。该片段化位点也是独特的,因为它缺少插入序列。我们发现2.6-kb和1.3-kb rRNA片段的同时出现不是由于操作间序列差异引起的,而是反映了缓慢的处理过程。 23S rRNA中两个片段位点的不同特征表明它们是通过不同的机制加工的。有趣的是,2.6-kb rRNA的量在培养物生长过程中会发生变化。我们观察到在接种后的最初几个小时内2.6-kb rRNA片段的相对量有短暂的增加,这表明在培养物生长过程中rRNA合成速率与结构域III加工速率之比的变化。

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