Veldman G M, Brand R C, Klootwijk J, Planta R
Nucleic Acids Res. 1980 Jul 11;8(13):2907-20. doi: 10.1093/nar/8.13.2907.
The DNA sequences of the intergenic region between the 17S and 5.8S rRNA genes of the ribosomal RNA operon in yeast has been determined. In this region the 37S ribosomal precursor RNA is specifically cleaved at a number of sites in the course of the maturation process. The exact position of these processing sites has been established by sequence analysis of the terminal fragments of the respective RNA species. There appears to be no significant complementarity between the sequences surrounding the two termini of the 18S secondary precursor RNA nor between those surrounding the two termini of 17S mature rRNA. This finding implies that the processing of yeast 37S ribosomal precursor RNA is not directed by a double-strand specific ribonuclease previously shown to be involved in the processing of E. coli ribosomal precursor RNA [see Refs 1,2]. The processing sites of yeast ribosomal precursor RNA described in the present paper are all flanked at one side by a very [A+T]-rich sequence. In addition, sequence repeats are found around the processing sites in this precursor RNA. Finally, sequence homologies are present at the 3'-termini [6 nucleotides] and the 5'-termini [13 nucleotides] of a number of mature rRNA products and intermediate ribosomal RNA precursors. These structural features are discussed in terms of possible recognition sites for the processing enzymes.
已测定了酵母核糖体RNA操纵子中17S和5.8S rRNA基因之间基因间区域的DNA序列。在该区域,37S核糖体前体RNA在成熟过程中会在多个位点发生特异性切割。通过对相应RNA种类末端片段的序列分析,已确定了这些加工位点的确切位置。18S二级前体RNA两个末端周围的序列之间,以及17S成熟rRNA两个末端周围的序列之间,似乎都不存在明显的互补性。这一发现表明,酵母37S核糖体前体RNA的加工并非由先前已证明参与大肠杆菌核糖体前体RNA加工的双链特异性核糖核酸酶所指导[见参考文献1,2]。本文所述的酵母核糖体前体RNA的加工位点一侧均由富含[A+T]的序列侧翼。此外,在该前体RNA的加工位点周围发现了序列重复。最后,在一些成熟rRNA产物和中间核糖体RNA前体的3'末端[6个核苷酸]和5'末端[13个核苷酸]存在序列同源性。就加工酶的可能识别位点对这些结构特征进行了讨论。