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Structural equivalence in the transcribed spacers of pre-rRNA transcripts in Schizosaccharomyces pombe

机译:粟酒裂殖酵母前rRNA转录物转录间隔区的结构等价

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The structure of the internal transcribed spacer 2 (ITS2) in Schizosaccharomyces pombe was re-evaluated with respect to phylogenetically conserved features in yeasts, features in other transcribed spacer regions as well as the binding of transacting factors which potentially play a role in ribosomal maturation. Computer analyses and probes for nuclease protection indicate a very simple core structure consisting of a single extended hairpin which includes the interacting termini of the mature 5.8S and 25S rRNAs. Comparisons with ITS2 sequences in greatly diverging organisms indicate that the same feature also can be recognized. This is especially clear in organisms that contain very short sequences in which the putative structures are much less ambiguous. Diversity between organisms is the result of changes in hairpin length as well as the addition of branched helices. Protein binding and gel retardation studies with the S.pombe ITS2 further indicate that, as observed in the 3′ external transcribed spacer (ETS) and ITS1 regions, the extended hairpin is not only the site of intermediate RNA cleavage during rRNA processing but also a site for specific interactions with one or more soluble factors. Taken together with other analyses on transcribed spacer regions, the present data suggest that the spacer regions all may act in a similar fashion, not only to organize the maturing terminal sequences, but also serve to organize specific soluble factors possibly acting with snoRNAs or in a manner which is analogous with that of the free snoRNPs.
机译:关于裂殖酵母的内部转录间隔区2(ITS2)的结构,根据酵母的系统发育保守特征,其他转录间隔区的特征以及可能在核糖体成熟中发挥作用的交易因子的结合进行了重新评估。计算机分析和核酸酶保护探针显示非常简单的核心结构,由单个延伸的发夹组成,其中包括成熟的5.8S和25S rRNA的相互作用末端。在差异很大的生物体中与ITS2序列进行比较表明,也可以识别相同的特征。这在包含非常短序列的生物中尤其明显,在这些序列中推定的结构不太模糊。生物之间的多样性是发夹长度的变化以及分支螺旋的增加的结果。用S.pombe ITS2进行的蛋白质结合和凝胶阻滞研究进一步表明,如在3'外部转录间隔区(ETS)和ITS1区域观察到的,发夹延伸不仅是rRNA加工过程中中间RNA裂解的位点,而且是与一种或多种可溶性因子发生特定相互作用的位点。结合对转录间隔区的其他分析,本数据表明,间隔区均可以以相似的方式起作用,不仅可以组织成熟的末端序列,而且还可以组织可能与snoRNA或在类似于游离snoRNP的方式。

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