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Compilation of mRNA polyadenylation signals in Arabidopsis revealed a new signal element and potential secondary structures

机译:拟南芥中的mRNA聚腺苷酸化信号的编译揭示了一个新的信号元件和潜在的二级结构

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Using a novel program, SignalSleuth, and a database containing authenticated polyadenylation [poly(A)] sites, we analyzed the composition of mRNA poly(A) signals in Arabidopsis (Arabidopsis thaliana), and reevaluated previously described cis-elements within the 3'-untranslated (UTR) regions, including near upstream elements and far upstream elements. As predicted, there are absences of high-consensus signal patterns. The AAUAAA signal topped the near upstream elements patterns and was found within the predicted location to only approximately 10% of 3'-UTRs. More importantly, we identified a new set, named cleavage elements, of poly(A) signals flanking both sides of the cleavage site. These cis-elements were not previously revealed by conventional mutagenesis and are contemplated as a cluster of signals for cleavage site recognition. Moreover, a singlenucleotide profile scan on the 3'-UTR regions unveiled a distinct arrangement of alternate stretches of U and A nucleotides, which led to a prediction of the formation of secondary structures. Using an RNA secondary structure prediction program, mFold, we identified three main types of secondary structures on the sequences analyzed. Surprisingly, these observed secondary structures were all interrupted in previously constructed mutations in these regions. These results will enable us to revise the current model of plant poly(A) signals and to develop tools to predict 3'-ends for gene annotation.
机译:使用新颖的程序SignalSleuth和包含经过身份验证的聚腺苷酸化[poly(A)]位点的数据库,我们分析了拟南芥(Arabidopsis thaliana)中mRNA poly(A)信号的组成,并重新评估了3'内先前描述的顺式元件-非翻译(UTR)区域,包括近上游元件和远上游元件。如预测的那样,不存在高共识信号模式。 AAUAAA信号位于附近上游元素模式的顶部,并且在预测位置内仅被发现为3'-UTR的大约10%。更重要的是,我们确定了一组新的名为切割元件的poly(A)信号,位于切割位点的两侧。这些顺式元件以前没有通过常规诱变揭示出来,并被认为是用于切割位点识别的信号簇。此外,在3'-UTR区进行的单核苷酸图谱扫描揭示了U和A核苷酸交替延伸的不同排列,从而预测了二级结构的形成。使用RNA二级结构预测程序mFold,我们在分析的序列上鉴定了三种主要类型的二级结构。令人惊讶的是,这些观察到的二级结构都在这些区域中先前构建的突变中全部被打断。这些结果将使我们能够修改植物poly(A)信号的当前模型,并开发工具来预测基因注释的3'端。

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