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Tissue Restricted Splice Junctions Originate Not Only from Tissue-Specific Gene Loci, but Gene Loci with a Broad Pattern of Expression

机译:受组织限制的剪接点不仅起源于组织特异性基因位点,而且起源于表达模式广泛的基因位点

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摘要

Cellular mechanisms that achieve protein diversity in eukaryotes are multifaceted, including transcriptional components such as RNA splicing. Through alternative splicing, a single protein-coding gene can generate multiple mRNA transcripts and protein isoforms, some of which are tissue-specific. We have conducted qualitative and quantitative analyses of the Bodymap 2.0 messenger RNA-sequencing data from 16 human tissue samples and identified 209,363 splice junctions. Of these, 22,231 (10.6%) were not previously annotated and 21,650 (10.3%) were expressed in a tissue-restricted pattern. Tissue-restricted alternative splicing was found to be widespread, with approximately 65% of expressed multi-exon genes containing at least one tissue-specific splice junction. Interestingly, we observed many tissue-specific splice junctions not only in genes expressed in one or a few tissues, but also from gene loci with a broad pattern of expression.
机译:实现真核生物蛋白质多样性的细胞机制是多方面的,包括转录成分,例如RNA剪接。通过选择性剪接,单个蛋白质编码基因可以产生多个mRNA转录本和蛋白质同工型,其中一些是组织特异性的。我们已经对来自16个人体组织样本的Bodymap 2.0信使RNA测序数据进行了定性和定量分析,并确定了209,363个剪接点。其中,有22,231(10.6%)未被预先注释,有21,650(10.3%)以组织受限的方式表达。发现组织限制的选择性剪接是普遍的,大约65%的表达的多外显子基因含有至少一个组织特异性剪接点。有趣的是,我们不仅在一种或几种组织中表达的基因中观察到许多组织特异性剪接点,而且在具有广泛表达模式的基因位点中观察到了许多。

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