首页> 美国卫生研究院文献>Nucleic Acids Research >Separate structural elements within internal transcribed spacer 1 of Saccharomyces cerevisiae precursor ribosomal RNA direct the formation of 17S and 26S rRNA.
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Separate structural elements within internal transcribed spacer 1 of Saccharomyces cerevisiae precursor ribosomal RNA direct the formation of 17S and 26S rRNA.

机译:酿酒酵母前体核糖体RNA的内部转录间隔区1内的独立结构元件指导17S和26S rRNA的形成。

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摘要

Structural features of Internal Transcribed Spacer 1 (ITS1) that direct its removal from Saccharomyces cerevisiae pre-rRNA during processing were identified by an initial phylogenetic approach followed by in vivo mutational analysis of specific structural elements. We found that S. cerevisiae ITS1 can functionally be replaced by the corresponding regions from the yeasts Torulaspora delbrueckii, Kluyveromyces lactis and Hansenula wingei, indicating that structural elements required in cis for processing are evolutionarily conserved. Despite large differences in size, all ITS1 regions conform to the secondary structure proposed by Yeh et al. [Biochemistry 29 (1990) 5911-5918], showing five domains (I-V; 5'-->3') of which three harbour an evolutionarily highly conserved element. Removal of most of domain II, including its highly conserved element, did not affect processing. In contrast, highly conserved nucleotides directly downstream of processing site A2 in domain III play a major role in production of 17S, but not 26S rRNA. Domain IV and V are dispensable for 17S rRNA formation although an alternative, albeit inefficient, processing route to mature 17S rRNA may be mediated by a conserved region in domain IV. Each of these two domains is individually sufficient for efficient production of 26S rRNA, suggesting two independent processing pathways. We conclude that ITS1 is organized into two functionally and structurally distinct halves.
机译:内部转录间隔物1(ITS1)的结构特征可通过初步的系统发育方法,然后在体内对特定结构元件进行突变分析,来确定其在加工过程中从酿酒酵母前rRNA中的去除。我们发现酿酒酵母ITS1可以在功能上被来自酵母Torulaspora delbrueckii,乳酸克鲁维酵母和汉逊酵母的相应区域取代,这表明顺式加工所需的结构元件在进化上是保守的。尽管大小存在很大差异,但所有ITS1区域均符合Yeh等人提出的二级结构。 [Biochemistry 29(1990)5911-5918],显示了五个结构域(I-V; 5'-> 3'),其中三个具有进化上高度保守的元素。域II的大部分(包括其高度保守的元素)的删除不影响处理。相反,结构域III中加工位点A2下游的高度保守的核苷酸在17S rRNA的产生中起主要作用,而在26S rRNA的产生中不起作用。域IV和V对于17S rRNA的形成是必不可少的,尽管通过域IV中的保守区域可以介导成熟的17S rRNA的另一种尽管效率低下的加工途径。这两个结构域中的每一个都足以有效产生26S rRNA,这表明存在两个独立的加工途径。我们得出结论,ITS1被组织为两个在功能和结构上截然不同的两半。

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