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Novel processing in a mammalian nuclear 28S pre-rRNA: tissue-specific elimination of an intron bearing a hidden break site.

机译:哺乳动物核28S pre-rRNA中的新型加工过程:组织特异性消除带有隐藏断裂位点的内含子。

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摘要

Splitting and apparent splicing of ribosomal RNA, both previously unknown in vertebrates, were found in rodents of the genus Ctenomys. Instead of being formed by a single molecule of 4.4 kb, 28S rRNA is split in two molecules of 2.6 and 1.8 kb. A hidden break, mapping within a 106 bp 'intron' located in the D6 divergent region, is expressed in mature ribosomes of liver, lung, heart and spleen, as well as in primary fibroblast cultures. Testis-specific processing eliminates the intron and concomitantly the break site, producing non-split 28S rRNA molecules exclusively in this organ. The intron is flanked by two 9 bp direct repeats, revealing the acquisition by insertion of a novel rRNA processing strategy in the evolution of higher organisms.
机译:在脊椎动物学中的啮齿动物中发现了以前在脊椎动物中未知的核糖体RNA的分裂和明显剪接。 28S rRNA不是由4.4 kb的单个分子形成,而是分为2.6和1.8 kb的两个分子。一个隐蔽的断裂,位于D6趋异区域的一个106 bp的“内含子”内,在成熟的肝,肺,心脏和脾的核糖体以及原代成纤维细胞培养物中表达。睾丸特异的加工消除了内含子并因此消除了断裂位点,仅在该器官中产生了非分裂的28S rRNA分子。内含子的侧翼是两个9 bp的直接重复序列,揭示了通过在高等生物的进化过程中插入新的rRNA加工策略来获得内含子。

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