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比较RNA测序分析揭示了秀丽隐杆线虫肠道和肌肉中普遍存在的组织特异性可变聚腺苷酸化现象。

Comparative RNA-Seq analysis reveals pervasive tissue-specific alternative polyadenylation in Caenorhabditis elegans intestine and muscles.

作者信息

Blazie Stephen M, Babb Cody, Wilky Henry, Rawls Alan, Park Jin G, Mangone Marco

机构信息

Molecular and Cellular Biology Graduate Program, Arizona State University, Tempe, AZ, USA.

Virginia G. Piper Center for Personalized Diagnostics, The Biodesign Institute at Arizona State University, 1001 S McAllister Ave, Tempe, AZ, USA.

出版信息

BMC Biol. 2015 Jan 20;13:4. doi: 10.1186/s12915-015-0116-6.

Abstract

BACKGROUND

Tissue-specific RNA plasticity broadly impacts the development, tissue identity and adaptability of all organisms, but changes in composition, expression levels and its impact on gene regulation in different somatic tissues are largely unknown. Here we developed a new method, polyA-tagging and sequencing (PAT-Seq) to isolate high-quality tissue-specific mRNA from Caenorhabditis elegans intestine, pharynx and body muscle tissues and study changes in their tissue-specific transcriptomes and 3'UTRomes.

RESULTS

We have identified thousands of novel genes and isoforms differentially expressed between these three tissues. The intestine transcriptome is expansive, expressing over 30% of C. elegans mRNAs, while muscle transcriptomes are smaller but contain characteristic unique gene signatures. Active promoter regions in all three tissues reveal both known and novel enriched tissue-specific elements, along with putative transcription factors, suggesting novel tissue-specific modes of transcription initiation. We have precisely mapped approximately 20,000 tissue-specific polyadenylation sites and discovered that about 30% of transcripts in somatic cells use alternative polyadenylation in a tissue-specific manner, with their 3'UTR isoforms significantly enriched with microRNA targets.

CONCLUSIONS

For the first time, PAT-Seq allowed us to directly study tissue specific gene expression changes in an in vivo setting and compare these changes between three somatic tissues from the same organism at single-base resolution within the same experiment. We pinpoint precise tissue-specific transcriptome rearrangements and for the first time link tissue-specific alternative polyadenylation to miRNA regulation, suggesting novel and unexplored tissue-specific post-transcriptional regulatory networks in somatic cells.

摘要

背景

组织特异性RNA可塑性广泛影响所有生物体的发育、组织特性和适应性,但不同体细胞组织中RNA的组成、表达水平变化及其对基因调控的影响在很大程度上仍不清楚。在此,我们开发了一种新方法——聚腺苷酸化标签测序(PAT-Seq),用于从秀丽隐杆线虫的肠道、咽和体肌组织中分离高质量的组织特异性mRNA,并研究其组织特异性转录组和3'非翻译区(3'UTR)组的变化。

结果

我们鉴定出了数千个在这三种组织之间差异表达的新基因和异构体。肠道转录组范围广泛,表达超过30%的秀丽隐杆线虫mRNA,而肌肉转录组较小,但包含独特的特征性基因信号。所有三种组织中的活跃启动子区域都揭示了已知和新发现的丰富的组织特异性元件,以及推定的转录因子,这表明存在新的组织特异性转录起始模式。我们精确绘制了约20000个组织特异性聚腺苷酸化位点,并发现体细胞中约30%的转录本以组织特异性方式使用可变聚腺苷酸化,其3'UTR异构体富含微小RNA靶标。

结论

PAT-Seq首次使我们能够在体内直接研究组织特异性基因表达变化,并在同一实验中以单碱基分辨率比较同一生物体的三种体细胞组织之间的这些变化。我们精确确定了精确的组织特异性转录组重排,并首次将组织特异性可变聚腺苷酸化与微小RNA调控联系起来,这表明体细胞中存在新的、尚未探索的组织特异性转录后调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e7f/4343181/281f5940f2a6/12915_2015_116_Fig1_HTML.jpg

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