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Prediction of signal recognition particle RNA genes

机译:信号识别颗粒RNA基因的预测

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We describe a method for prediction of genes that encode the RNA component of the signal recognition particle (SRP). A heuristic search for the strongly conserved helix 8 motif of SRP RNA is combined with covariance models that are based on previously known SRP RNA sequences. By screening available genomic sequences we have identified a large number of novel SRP RNA genes and we can account for at least one gene in every genome that has been completely sequenced. Novel bacterial RNAs include that of Thermotoga maritima, which, unlike all other non-gram-positive eubacteria, is predicted to have an Alu domain. We have also found the RNAs of Lactococcus lactis and Staphylococcus to have an unusual UGAC tetraloop in helix 8 instead of the normal GNRA sequence. An investigation of yeast RNAs reveals conserved sequence elements of the Alu domain that aid in the analysis of thee RNAs. Analysis of the human genome reveals only two likely genes, both on chromosome 14. Our method for SRP RNA gene prediction is the first convenient tool for this task and should be useful in genome annotation.
机译:我们描述了一种预测编码信号识别颗粒(SRP)RNA成分的基因的方法。启发式搜索SRP RNA的高度保守的螺旋8基序与基于以前已知的SRP RNA序列的协方差模型结合在一起。通过筛选可用的基因组序列,我们已经鉴定出大量新的SRP RNA基因,并且我们可以在每个已完全测序的基因组中解释至少一个基因。新型细菌RNA包括马氏嗜热菌,与所有其他非革兰氏阳性真细菌不同,它被预测具有Alu结构域。我们还发现乳酸乳球菌和葡萄球菌的RNA在螺旋8中有一个不寻常的UGAC四环,而不是正常的GNRA序列。酵母RNA的研究揭示了Alu结构域的保守序列元素,可帮助您分析RNA。对人类基因组的分析仅揭示了两个可能的基因,均位于14号染色体上。我们的SRP RNA基因预测方法是该任务的第一个便捷工具,应在基因组注释中有用。

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