Côté C A, Peculis B A
Genetics and Biochemistry Branch, 10 Center Drive, National Institutes of Health, NIDDK, Bethesda, MD 20892-1766, USA.
Nucleic Acids Res. 2001 May 15;29(10):2106-16. doi: 10.1093/nar/29.10.2106.
Eucaryotic ribosome biogenesis involves many cis-acting sequences and trans-acting factors, including snoRNAS: We have used directed mutagenesis of rDNA plasmids in yeast to identify critical sequence and structural elements within and flanking the ITS2-proximal stem. This base paired structure, present in the mature ribosome, is formed between the 5'-end of 25S and the 3'-end of 5.8S rRNAS: Previously we demonstrated that formation of this structure was critical for pre-rRNA processing in yeast. Here we show that there are no sequence-specific recognition elements within the ITS2-proximal stem, rather the structure of this stem is critical for processing. This stem cannot exceed a specific length, but there are different length restrictions for different regions within this tripartite stem. Neither the conserved unpaired nucleotides within the stem nor the sequence of the mature rRNA at the processing sites are required for processing. Collectively, these results suggest a measuring model whereby initial cleavage within ITS2 at the C2 processing site and termination of subsequent exonuclease activity yielding the mature termini are affected by the relative position of sequence and structural elements within the ITS2-proximal stem.
真核生物核糖体生物合成涉及许多顺式作用序列和反式作用因子,包括小核仁RNA(snoRNAs):我们利用酵母中rDNA质粒的定向诱变来鉴定ITS2近端茎干内部及其侧翼的关键序列和结构元件。这种存在于成熟核糖体中的碱基配对结构,是在25S的5'端和5.8S rRNA的3'端之间形成的:此前我们证明这种结构的形成对酵母中的前体rRNA加工至关重要。在这里我们表明,ITS2近端茎干内不存在序列特异性识别元件,而是该茎干的结构对加工至关重要。这个茎干不能超过特定长度,但在这个三联茎干的不同区域有不同的长度限制。茎干内保守的未配对核苷酸以及加工位点处成熟rRNA的序列对于加工都不是必需的。总体而言,这些结果提示了一种测量模型,即ITS2中C2加工位点处的初始切割以及随后产生成熟末端的外切核酸酶活性的终止,受ITS2近端茎干内序列和结构元件的相对位置影响。