Schnare M N, Cook J R, Gray M W
Department of Biochemistry, Dalhousie University Halifax, Nova Scotia, Canada.
J Mol Biol. 1990 Sep 5;215(1):85-91. doi: 10.1016/S0022-2836(05)80097-X.
Cytoplasmic ribosomes from Euglena gracilis contain 16 rRNA components. These include the typical 5 S, 5.8 S and 19 S rRNAs that are found in other eukaryotes as well as 13 discrete small RNAs that interact to form the equivalent of eukaryotic 25-28 S rRNA (accompanying paper). We have utilized DNA sequencing techniques to establish that genes for all of these RNAs, with the exception of 5 S rRNA, are encoded by the 11,500 base-pair circular rDNA of E. gracilis. We have determined the relative positions of the coding regions for the 19 S rRNA and the 14 components (including 5.8 S rRNA) of the large subunit rRNA, thereby establishing that the genes for each of these rRNAs are separated by internal transcribed spacers. We conclude that sequences corresponding to these spacers are removed post-transcriptionally from a high molecular weight pre-rRNA, resulting in a multiply fragmented large subunit rRNA. Internal transcribed spacers, in positions analogous to some of these additional Euglena rDNA spacers, have been found in the rDNA of other organisms and organelles. This finding supports the view that at least some internal transcribed spacers may have been present at an early stage in the evolution of rRNA genes.
纤细裸藻的细胞质核糖体含有16种rRNA组分。这些组分包括在其他真核生物中也能找到的典型的5S、5.8S和19S rRNA,以及13种离散的小RNA,它们相互作用形成相当于真核生物25 - 28S rRNA的物质(附文)。我们利用DNA测序技术确定,除了5S rRNA外,所有这些RNA的基因都由纤细裸藻11,500个碱基对的环状rDNA编码。我们已经确定了19S rRNA和大亚基rRNA的14个组分(包括5.8S rRNA)编码区的相对位置,从而确定这些rRNA各自的基因被内部转录间隔区隔开。我们得出结论,与这些间隔区对应的序列在转录后从高分子量的前体rRNA中被去除,从而产生多个片段化的大亚基rRNA。在其他生物和细胞器的rDNA中发现了与这些额外的裸藻rDNA间隔区某些位置类似的内部转录间隔区。这一发现支持了这样一种观点,即至少一些内部转录间隔区可能在rRNA基因进化的早期阶段就已存在。