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Xenopus microRNA genes are predominantly located within introns and are differentially expressed in adult frog tissues via post-transcriptional regulation

机译:爪蟾microRNA基因主要位于内含子内并通过转录后调控在成年青蛙组织中差异表达

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摘要

The amphibian Xenopus provides a model organism for investigating microRNA expression during vertebrate embryogenesis and development. Searching available Xenopus genome databases using known human pre-miRNAs as query sequences, more than 300 genes encoding 142 Xenopus tropicalis miRNAs were identified. Analysis of Xenopus tropicalis miRNA genes revealed a predominate positioning within introns of protein-coding and nonprotein-coding RNA Pol II-transcribed genes. MiRNA genes were also located in pre-mRNA exons and positioned intergenically between known protein-coding genes. Many miRNA species were found in multiple locations and in more than one genomic context. MiRNA genes were also clustered throughout the genome, indicating the potential for the cotranscription and coordinate expression of miRNAs located in a given cluster. Northern blot analysis confirmed the expression of many identified miRNAs in both X. tropicalis and X. laevis. Comparison of X. tropicalis and X. laevis blots revealed comparable expression profiles, although several miRNAs exhibited species-specific expression in different tissues. More detailed analysis revealed that for some miRNAs, the tissue-specific expression profile of the pri-miRNA precursor was distinctly different from that of the mature miRNA profile. Differential miRNA precursor processing in both the nucleus and cytoplasm was implicated in the observed tissue-specific differences. These observations indicated that post-transcriptional processing plays an important role in regulating miRNA expression in the amphibian Xenopus.
机译:两栖类非洲爪蟾提供了一个模型生物,用于研究脊椎动物胚胎发生和发育过程中的microRNA表达。使用已知的人类pre-miRNAs作为查询序列搜索可用的非洲爪蟾基因组数据库,鉴定出编码142个热带爪蟾miRNA的300多个基因。对热带非洲爪蟾miRNA基因的分析显示,在编码蛋白质和非编码RNA Pol II转录基因的内含子中占主导地位。 MiRNA基因也位于前mRNA外显子中,并且位于已知蛋白编码基因之间。在多个位置和多个基因组环境中发现了许多miRNA。 MiRNA基因也聚集在整个基因组中,表明潜在的共转录和协调位于给定簇中的miRNA的表达。 Northern印迹分析证实了许多已鉴定的miRNA在热带假单胞菌和拉维酵母中的表达。 X.tropicis和X.laevis印迹的比较显示了可比较的表达谱,尽管几种miRNA在不同组织中表现出物种特异性表达。更详细的分析显示,对于某些miRNA,pri-miRNA前体的组织特异性表达谱与成熟miRNA谱明显不同。观察到的组织特异性差异与细胞核和细胞质中的差异miRNA前体加工有关。这些观察表明,转录后加工在调节两栖非洲爪蟾中的miRNA表达中起重要作用。

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