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A search for H/ACA snoRNAs in yeast using MFE secondary structure prediction.

机译:使用MFE二级结构预测技术搜索酵母中的H / ACA snoRNA。

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MOTIVATION: Noncoding RNA genes produce functional RNA molecules rather than coding for proteins. One such family is the H/ACA snoRNAs. Unlike the related C/D snoRNAs these have resisted automated detection to date. RESULTS: We develop an algorithm to screen the yeast genome for novel H/ACA snoRNAs. To achieve this, we introduce some new methods for facilitating the search for noncoding RNAs in genomic sequences which are based on properties of predicted minimum free-energy (MFE) secondary structures. The algorithm has been implemented and can be generalized to enable screening of other eukaryote genomes. We find that use of primary sequence alone is insufficient for identifying novel H/ACA snoRNAs. Only the use of secondary structure filters reduces the number of candidates to a manageable size. From genomic context, we identify three strong H/ACA snoRNA candidates. These together with a further 47 candidates obtained by our analysis are being experimentally screened.
机译:动机:非编码RNA基因产生功能性RNA分子,而不是编码蛋白质。 H / ACA snoRNAs就是这样的家族。迄今为止,与相关的C / D snoRNA不同,它们已拒绝自动检测。结果:我们开发了一种算法,以筛选酵母基因组中的新型H / ACA snoRNA。为实现此目的,我们基于预测的最小自由能(MFE)二级结构的特性,引入了一些新的方法来促进在基因组序列中搜索非编码RNA。该算法已经实现,可以推广以筛选其他真核生物基因组。我们发现仅使用一级序列不足以鉴定新型H / ACA snoRNAs。仅使用二级结构过滤器可将候选数减少到可管理的大小。从基因组的背景下,我们确定了三个强大的H / ACA snoRNA候选人。这些以及通过我们的分析获得的另外47个候选物正在实验筛选中。

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