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Identification of post-transcriptionally regulated Xenopus tropicalis maternal mRNAs by microarray.

机译:通过微阵列鉴定转录后调节的热带非洲爪蟾母体mRNA。

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Cytoplasmic control of the adenylation state of mRNAs is a critical post-transcriptional process involved in the regulation of mRNAs stability and translational efficiency. The early development of Xenopus laevis has been a major model for the study of such regulations. We describe here a microarray analysis to identify mRNAs that are regulated by changes in their adenylation state during oogenesis and early development of the diploid frog Xenopus tropicalis. The microarray data were validated using qRT-PCR and direct analysis of the adenylation state of endogenous maternal mRNAs during the period studied. We identified more than 500 mRNAs regulated at the post-transcriptional level among the 3000 mRNAs potentially detected by the microarray. The mRNAs were classified into nine different adenylation behavior categories. The various adenylation profiles observed during oocyte maturation and early development and the analyses of 3'-untranslated region sequences suggest that previously uncharacterized sequence elements control the adenylation behavior of the newly identified mRNAs. These data should prove useful in identifying mRNAs with important functions during oocyte maturation and early development.
机译:mRNA的腺苷酸化状态的细胞质控制是一个重要的转录后过程,涉及调节mRNA的稳定性和翻译效率。非洲爪蟾的早期发展已成为研究此类法规的主要模型。我们在这里描述了一种微阵列分析,以识别在二倍体青蛙非洲爪蟾的卵子发生和早期发育过程中受其腺苷酸化状态变化调控的mRNA。使用qRT-PCR验证了微阵列数据,并在研究期间直接分析了内源性母体mRNA的腺苷酸化状态。我们在微阵列可能检测到的3000种mRNA中鉴定了超过500种在转录后水平受调控的mRNA。 mRNA被分为9个不同的腺苷化行为类别。在卵母细胞成熟和早期发育过程中观察到的各种腺苷酸化概况以及对3'非翻译区序列的分析表明,先前未表征的序列元件控制着新鉴定的mRNA的腺苷酸化行为。这些数据应被证明可用于鉴定在卵母细胞成熟和早期发育过程中具有重要功能的mRNA。

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