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两种四膜虫属物种中初级和次级26S rRNA结构的比较:扩展片段中存在强烈进化和结构限制的证据

Comparison of primary and secondary 26S rRNA structures in two Tetrahymena species: evidence for a strong evolutionary and structural constraint in expansion segments.

作者信息

Engberg J, Nielsen H, Lenaers G, Murayama O, Fujitani H, Higashinakagawa T

机构信息

Department of Biochemistry B, Panum Institute, University of Copenhagen, Denmark.

出版信息

J Mol Evol. 1990 Jun;30(6):514-21. doi: 10.1007/BF02101107.

Abstract

We have determined the nucleotide sequence of the 26S large subunit (LSU) rRNA genes for two Tetrahymena species, T. thermophila and T. pyriformis. The inferred rRNA sequences are presented in their most probable secondary structures based on compensatory mutations, energy, and conservation criteria. The majority of the nucleotide changes between the two Tetrahymena LSU rRNAs and the positions of a relatively large deletion and of the processing cleavage sites resulting in the generation of the hidden break are all located within the so-called divergent domains or expansion segments. These are regions within the common core of secondary structure where expansions have taken place during the evolution of the rRNA of higher eukaryotes. The dispensable nature of some of the expansion segments has been taken as evidence of their non-functionality. However, our data show that a considerable selective constraint has operated to preserve the secondary structure of these segments. Especially in the case of the D2 and D8 segments, the presence of a considerable number of compensatory base changes suggests that the secondary structure of these regions is of functional importance. Alternatively, these expansion segments may have maintained characteristic folding patterns because only such structures are being tolerated within otherwise functionally important regions.

摘要

我们已经确定了嗜热四膜虫和梨形四膜虫这两种四膜虫属物种的26S大亚基(LSU)rRNA基因的核苷酸序列。根据补偿性突变、能量和保守性标准,推导的rRNA序列以其最可能的二级结构呈现。两种四膜虫LSU rRNA之间的大多数核苷酸变化以及导致隐藏断裂产生的相对较大缺失和加工切割位点的位置,都位于所谓的分歧结构域或扩展片段内。这些是二级结构共同核心内的区域,在高等真核生物rRNA的进化过程中发生了扩展。一些扩展片段的可有可无性被视为它们无功能的证据。然而,我们的数据表明,存在相当大的选择限制来维持这些片段的二级结构。特别是在D2和D8片段的情况下,大量补偿性碱基变化的存在表明这些区域的二级结构具有功能重要性。或者,这些扩展片段可能保持了特征性的折叠模式,因为只有这样的结构在其他功能重要区域内才被容忍。

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