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人类细胞中无义介导的 mRNA 降解途径的自身调控。

Autoregulation of the nonsense-mediated mRNA decay pathway in human cells.

机构信息

Department of Chemistry and Biochemistry, University of Bern, Bern, Switzerland.

出版信息

RNA. 2011 Dec;17(12):2108-18. doi: 10.1261/rna.030247.111. Epub 2011 Oct 25.

Abstract

Nonsense-mediated mRNA decay (NMD) is traditionally portrayed as a quality-control mechanism that degrades mRNAs with truncated open reading frames (ORFs). However, it is meanwhile clear that NMD also contributes to the post-transcriptional gene regulation of numerous physiological mRNAs. To identify endogenous NMD substrate mRNAs and analyze the features that render them sensitive to NMD, we performed transcriptome profiling of human cells depleted of the NMD factors UPF1, SMG6, or SMG7. It revealed that mRNAs up-regulated by NMD abrogation had a greater median 3'-UTR length compared with that of the human mRNAome and were also enriched for 3'-UTR introns and uORFs. Intriguingly, most mRNAs coding for NMD factors were among the NMD-sensitive transcripts, implying that the NMD process is autoregulated. These mRNAs all possess long 3' UTRs, and some of them harbor uORFs. Using reporter gene assays, we demonstrated that the long 3' UTRs of UPF1, SMG5, and SMG7 mRNAs are the main NMD-inducing features of these mRNAs, suggesting that long 3' UTRs might be a frequent trigger of NMD.

摘要

无意义介导的 mRNA 降解(NMD)传统上被描绘为一种质量控制机制,可降解具有截断开放阅读框(ORF)的 mRNA。然而,目前也很清楚,NMD 还参与了众多生理 mRNA 的转录后基因调控。为了鉴定内源性 NMD 底物 mRNA 并分析使它们对 NMD 敏感的特征,我们对耗尽 NMD 因子 UPF1、SMG6 或 SMG7 的人细胞进行了转录组谱分析。结果表明,与人类 mRNAome 相比,NMD 阻断后上调的 mRNA 具有更大的中位数 3'-UTR 长度,并且还富含 3'-UTR 内含子和 uORF。有趣的是,大多数编码 NMD 因子的 mRNA 都属于 NMD 敏感转录本,这意味着 NMD 过程是自身调控的。这些 mRNA 都具有长的 3'UTR,其中一些还含有 uORF。通过报告基因检测,我们证明了 UPF1、SMG5 和 SMG7 mRNA 的长 3'UTR 是这些 mRNA 的主要 NMD 诱导特征,这表明长 3'UTR 可能是 NMD 的常见触发因素。

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