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Widespread establishment and regulatory impact of Alu exons in human genes

机译:Alu外显子在人类基因中的广泛建立和调控影响

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摘要

The Alu element has been a major source of new exons during primate evolution. Thousands of human genes contain spliced exons derived from Alu elements. However, identifying Alu exons that have acquired genuine biological functions remains a major challenge. We investigated the creation and establishment of Alu exons in human genes, using transcriptome profiles of human tissues generated by high-throughput RNA sequencing (RNA-Seq) combined with extensive RT-PCR analysis. More than 25% of Alu exons analyzed by RNA-Seq have estimated transcript indusion levels of at least 50% in the human cerebellum, indicating widespread establishment of Alu exons in human genes. Genes encoding zinc finger transcription factors have significantly higher levels of Alu exonization. Importantly, Alu exons with high splicing activities are strongly enriched in the 5-UTR, and two-thirds (10/15) of 5-UTR Alu exons tested by luciferase reporter assays significantly alter mRNA translational efficiency. Muta-tional analysis reveals the specific molecular mechanisms by which newly created 5'-UTR Alu exons modulate translational efficiency, such as the creation or elongation of upstream ORFs that repress the translation of the primary ORFs. This study presents genomic evidence that a major functional consequence of Alu exonization is the lineage-specific evolution of translational regulation. Moreover, the preferential creation and establishment of Alu exons in zinc finger genes suggest that Alu exonization may have globally affected the evolution of primate and human transcriptomes by regulating the protein production of master transcriptional regulators in specific lineages.
机译:在灵长类动物进化过程中,Alu元素一直是新外显子的主要来源。成千上万的人类基因包含源自Alu元素的剪接外显子。但是,鉴定具有真正生物学功能的Alu外显子仍然是一项重大挑战。我们使用高通量RNA测序(RNA-Seq)结合广泛的RT-PCR分析生成的人体组织的转录组图谱,研究了人类基因中Alu外显子的创建和建立。 RNA-Seq分析显示,超过25%的Alu外显子在人类小脑中的转录本水平至少达到50%,这表明Alu外显子在人类基因中的广泛建立。编码锌指转录因子的基因具有显着更高水平的Alu外显子化。重要的是,具有高剪接活性的Alu外显子在5-UTR中大量富集,通过萤光素酶报告基因检测法测试的5-UTR Alu外显子的三分之二(10/15)会显着改变mRNA的翻译效率。突变分析揭示了新创建的5'-UTR Alu外显子调节翻译效率的特定分子机制,例如抑制主要ORF翻译的上游ORF的产生或延长。这项研究提供了基因组证据,证明Alu外显子化的主要功能后果是翻译调控的谱系特异性进化。此外,锌指基因中Alu外显子的优先创建和建立表明,Alu外显子化可能通过调节特定谱系中主要转录调节子的蛋白质产生,在全球范围内影响了灵长类和人类转录组的进化。

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  • 作者单位

    Departments of Biostatistics,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242;

    Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX 77845;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242,Departments of Molecular Physiology and Biophysics,University of Iowa,Iowa City, IA 52242,Departments of Neurology,University of Iowa,Iowa City, IA 52242;

    Departments of lnternal Medicine,University of Iowa,Iowa City, IA 52242,Departments of Biomedical Engineering,University of Iowa,Iowa City, IA 52242;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    transcriptome evolution; transposable element; alternative splicing; deep sequencing; uorf;

    机译:转录组进化;转座因子;选择性剪接;深度测序;uorf;
  • 入库时间 2022-08-18 00:40:43

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