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Genome-wide analysis of poly(A) site selection in Schizosaccharomyces pombe

机译:全基因组裂殖酵母中poly(A)位点选择的全基因组分析

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Polyadenylation of pre-mRNAs, a critical step in eukaryotic gene expression, is mediated by cis elements collectively called the polyadenylation signal. Genome-wide analysis of such polyadenylation signals was missing in fission yeast, even though it is an important model organism. We demonstrate that the canonical AATAAA motif is the most frequent and functional polyadenylation signal in Schizosaccharomyces pombe. Using analysis of RNA-Seq data sets from cells grown under various physiological conditions, we identify 3′ UTRs for nearly 90% of the yeast genes. Heterogeneity of cleavage sites is common, as is alternative polyadenylation within and between conditions. We validated the computationally identified sequence elements likely to promote polyadenylation by functional assays, including qRT-PCR and 3′ RACE analysis. The biological importance of the AATAAA motif is underlined by functional analysis of the genes containing it. Furthermore, it has been shown that convergent genes require trans elements, like cohesin for efficient transcription termination. Here we show that convergent genes lacking cohesin (on chromosome 2) are generally associated with longer overlapping mRNA transcripts. Our bioinformatic and experimental genome-wide results are summarized and can be accessed and customized in a user-friendly database Pomb(A).
机译:前mRNA的聚腺苷酸化是真核基因表达的关键步骤,由顺式元件介导,这些顺式元件统称为聚腺苷酸化信号。尽管裂殖酵母是一种重要的模型生物,但在全基因组分析中却缺乏这种聚腺苷酸信号的分析。我们证明规范的AATAAA主题是粟酒裂殖酵母中最常见和功能性的聚腺苷酸化信号。使用来自在各种生理条件下生长的细胞的RNA-Seq数据集进行分析,我们确定了将近90%的酵母基因的3'UTR。裂解位点的异质性是普遍的,条件内和条件间的替代聚腺苷酸化也很常见。我们通过功能测定,包括qRT-PCR和3'RACE分析,验证了可能促进聚腺苷酸化的计算机识别序列元素。通过对包含AATAAA基序的基因进行功能分析,可以强调AATAAA基序的生物学重要性。此外,已经表明,收敛基因需要反式元件,例如粘着蛋白才能有效地终止转录。在这里,我们显示缺少黏附素的聚合基因(在2号染色体上)通常与更长的重叠mRNA转录物相关。我们的生物信息学和实验性全基因组结果进行了总结,可以在用户友好的数据库Pomb(A)中进行访问和定制。

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