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In silico detection of control signals: mRNA3′-end-processing sequences in diverse species

机译:计算机检测控制信号:mRNA不同物种的3-末端加工序列

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摘要

We have investigated mRNA 3′-end-processing signals in each of six eukaryotic species (yeast, rice, arabidopsis, fruitfly, mouse, and human) through the analysis of more than 20,000 3′-expressed sequence tags. The use and conservation of the canonical AAUAAA element vary widely among the six species and are especially weak in plants and yeast. Even in the animal species, the AAUAAA signal does not appear to be as universal as indicated by previous studies. The abundance of single-base variants of AAUAAA correlates with their measured processing efficiencies. As found previously, the plant polyadenylation signals are more similar to those of yeast than to those of animals, with both common content and arrangement of the signal elements. In all species examined, the complete polyadenylation signal appears to consist of an aggregate of multiple elements. In light of these and previous results, we present a broadened concept of 3′-end-processing signals in which no single exact sequence element is universally required for processing. Rather, the total efficiency is a function of all elements and, importantly, an inefficient word in one element canbe compensated for by strong words in other elements. These complexpatterns indicate that effective tools to identify 3′-end-processingsignals will require more than consensus sequence identification.
机译:通过分析超过20,000个3'表达的序列标签,我们已经研究了六个真核物种(酵母,水稻,拟南芥,果蝇,小鼠和人类)中的每个基因的mRNA 3'末端加工信号。在六个物种中,典范的AAUAAA元素的使用和保存情况差异很大,在植物和酵母中尤为弱。即使在动物物种中,AAUAAA信号似乎也不像以前的研究那样普遍。 AAUAAA的单碱基变体的丰度与其测得的加工效率相关。如前所述,植物的聚腺苷酸化信号与酵母的信号相比,与动物的信号更相似,具有共同的内容和信号元件的排列方式。在所有检查的物种中,完整的聚腺苷酸化信号似乎由多个元素的集合组成。根据这些和先前的结果,我们提出了3'末端处理信号的扩展概念,其中普遍不需要单个精确的序列元素来进行处理。相反,总效率是所有要素的函数,重要的是,一个要素中的低效率单词可以被其他要素中的强词所补偿。这些复杂模式表明识别3'末端加工的有效工具信号将需要的不仅仅是共识序列识别。

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