Brulé F, Venema J, Ségault V, Tollervey D, Branlant C
Laboratoire d'Enzymologie et de Génie Génétique, URA CNRS 457, Université de Nancy l, France.
RNA. 1996 Feb;2(2):183-97.
The 5' external transcribed spacer (ETS) region of the pre-rRNA in Saccharomyces cerevisiae contains a sequence with 10 bp of perfect complementarity to the U3 snoRNA. Base pairing between these sequences has been shown to be required for 18S rRNA synthesis, although interaction over the full 10 bp of complementarity is not required. We have identified the homologous sequence in the 5' ETS from the evolutionarily distant yeast Hansenula wingei; unexpectedly, this shows two sequence changes in the region predicted to base pair to U3. By PCR amplification and direct RNA sequencing, a single type of U3 snoRNA coding sequence was identified in H. wingei. As in the S. cerevisiae U3 snoRNA genes, it is interrupted by an intron with features characteristic of introns spliced in a spliceosome. Consequently, this unusual property is not restricted to the yeast genus Saccharomyces. The introns of the H. wingei and S. cerevisiae U3 genes show strong differences in length and sequence, but are located at the same position in the U3 sequence, immediately upstream of the phylogenetically conserved Box A region. The 3' domains of the H. wingei and S. cerevisiae U3 snoRNAs diverge strongly in primary sequence, but have very similar predicted secondary structures. The 5' domains, expected to play a direct role in pre-ribosomal RNA maturation, are more conserved. The sequence predicted to base pair to the pre-rRNA contains two nucleotide substitutions in H. wingei that restore 10 bp of perfect complementarity to the 5' ETS. This is a strong phylogenetic evidence for the importance of the U3/pre-rRNA interaction.
酿酒酵母前体rRNA的5'外部转录间隔区(ETS)含有一段与U3 snoRNA具有10个碱基对完全互补的序列。这些序列之间的碱基配对已被证明是18S rRNA合成所必需的,尽管并不需要整个10个碱基对互补区域都发生相互作用。我们在进化距离较远的汉逊酵母的5' ETS中鉴定出了同源序列;出乎意料的是,该序列在预测与U3碱基配对的区域出现了两个序列变化。通过PCR扩增和直接RNA测序,在汉逊酵母中鉴定出了单一类型的U3 snoRNA编码序列。与酿酒酵母U3 snoRNA基因一样,它被一个具有剪接体中剪接特征的内含子打断。因此,这种不寻常的特性并不局限于酿酒酵母属。汉逊酵母和酿酒酵母U3基因的内含子在长度和序列上有很大差异,但位于U3序列的同一位置,即系统发育保守的A框区域的上游。汉逊酵母和酿酒酵母U3 snoRNA的3'结构域在一级序列上有很大差异,但预测的二级结构非常相似。预计在核糖体前体RNA成熟中起直接作用的5'结构域则更为保守。预测与前体rRNA碱基配对的序列在汉逊酵母中含有两个核苷酸替换,恢复了与5' ETS的10个碱基对完全互补。这是U3/前体rRNA相互作用重要性的有力系统发育证据。