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Alternative Polyadenylation Directs Tissue-Specific miRNA Targeting in Caenorhabditis elegans Somatic Tissues

机译:替代聚腺苷酸化指导组织特异性miRNa靶向秀丽隐杆线虫体细胞组织

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摘要

abstract: mRNA expression dynamics promote and maintain the identity of somatic tissues in living organisms; however, their impact in post-transcriptional gene regulation in these processes is not fully understood. Here, we applied the PAT-Seq approach to systematically isolate, sequence, and map tissue-specific mRNA from five highly studied Caenorhabditis elegans somatic tissues: GABAergic and NMDA neurons, arcade and intestinal valve cells, seam cells, and hypodermal tissues, and studied their mRNA expression dynamics. The integration of these datasets with previously profiled transcriptomes of intestine, pharynx, and body muscle tissues, precisely assigns tissue-specific expression dynamics for 60% of all annotated C. elegans protein-coding genes, providing an important resource for the scientific community. The mapping of 15,956 unique high-quality tissue-specific polyA sites in all eight somatic tissues reveals extensive tissue-specific 3′untranslated region (3′UTR) isoform switching through alternative polyadenylation (APA) . Almost all ubiquitously transcribed genes use APA and harbor miRNA targets in their 3′UTRs, which are commonly lost in a tissue-specific manner, suggesting widespread usage of post-transcriptional gene regulation modulated through APA to fine tune tissue-specific protein expression. Within this pool, the human disease gene C. elegans orthologs rack-1 and tct-1 use APA to switch to shorter 3′UTR isoforms in order to evade miRNA regulation in the body muscle tissue, resulting in increased protein expression needed for proper body muscle function. Our results highlight a major positive regulatory role for APA, allowing genes to counteract miRNA regulation on a tissue-specific basis.
机译:摘要:mRNA表达动力学促进和维持生物体中体细胞组织的身份。然而,它们在这些过程中对转录后基因调控的影响尚不完全清楚。在这里,我们应用PAT-Seq方法从五个经过广泛研究的秀丽线虫秀丽的体细胞组织:GABA能和NMDA神经元,拱廊和肠瓣膜细胞,接缝细胞以及皮下组织中系统地分离,测序和定位组织特异性mRNA,并进行了研究它们的mRNA表达动力学。这些数据集与先前分析的肠道,咽和身体肌肉组织的转录组的整合,为所有带注释的秀丽隐杆线虫蛋白质编码基因的60%精确分配了组织特异性的表达动态,为科学界提供了重要资源。在所有八个体细胞组织中的15,956个独特的高质量组织特异性polyA位点的图谱揭示了广泛的组织特异性3'非翻译区(3'UTR)同工型通过交替的聚腺苷酸化(APA)进行转换。几乎所有无处不在的转录基因都使用APA并在其3'UTR中带有miRNA靶标,而这些靶标通常以组织特异性的方式丢失,这表明通过APA调控的转录后基因调控的广泛使用可以微调组织特异性蛋白的表达。在该库中,人类疾病基因线虫直系同源基因架-1和tct-1使用APA转换为较短的3'UTR亚型,从而逃避了人体肌肉组织中的miRNA调节,从而导致增加了适当身体所需的蛋白质表达肌肉功能。我们的结果强调了APA的主要积极调节作用,使基因可以在组织特异性的基础上抵消miRNA的调节。

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