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A proposal for the secondary structure of a variable area of eukaryotic small ribosomal subunit RNA involving the existence of a pseudoknot

机译:涉及假结存在的真核小核糖体小亚单位RNA可变区二级结构的建议

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Eukaryotic small ribosomalr subunit RNAs contain an area of variable structure, V4, which comprises about 250 nucleotides in most species, whereas the corresponding area in bacterial small ribosomal subunit RNAs consists of about 64 nucleotides folded into a single hairpin. There is no consensus on the secondary structure of area V4 in eukaryotes, about 10 different models having been proposed. The prediction of a model on a comparative basis poses special problems because, due to the variability of the area in length as well as sequence, a dependable alignment is very difficult to achieve. A new model was derived by systematic examination of all combinations of helices that have been hitherto proposed, plus some new ones. The following properties of the helices were examined: transposability to all presently known sequences, presence of compensating substitutions, and thermodynamlc stability. A model was selected by ranking all possible combinations of transposable helices according to the number of compensating substitutions scored. The optimal model comprises a pseudoknot and four hairpin structures. Certain species contain additional hairpins inserted between these structural elements, while in others the structure is partially or entirely deleted.
机译:真核小核糖体亚基RNAs包含一个可变结构区域V4,在大多数物种中包含约250个核苷酸,而细菌小核糖体亚基RNAs中的相应区域由约64个核苷酸折叠成一个发夹组成。在真核生物中,V4区的二级结构尚无共识,已提出了约10种不同的模型。在比较基础上对模型进行预测会带来特殊问题,因为由于长度和序列的可变性,很难实现可靠的比对。通过系统检查迄今提出的所有螺旋组合,再加上一些新模型,得出了一个新模型。检查了螺旋的以下性质:对所有目前已知序列的转座性,补偿性取代的存在以及热动力学稳定性。通过根据评分的代偿性替换的数量对转座螺旋的所有可能组合进行排名来选择模型。最佳模型包括假结和四个发夹结构。某些物种包含插入这些结构元素之间的其他发夹,而在其他物种中,该结构被部分或全部删除。

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