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miRNAs 和上游 AUG 统一的翻译抑制机制。

Unified translation repression mechanism for microRNAs and upstream AUGs.

机构信息

Department of Psychiatry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

BMC Genomics. 2010 Mar 5;11:155. doi: 10.1186/1471-2164-11-155.

Abstract

BACKGROUND

MicroRNAs (miRNAs) are endogenous small RNAs that modulate gene expression at the post-transcriptional level by binding complementary sites in the 3'-UTR. In a recent genome-wide study reporting a new miRNA target class (miBridge), we identified and validated interactions between 5'-UTRs and miRNAs. Separately, upstream AUGs (uAUGs) in 5'-UTRs are known to regulate genes translationally without affecting mRNA levels, one of the mechanisms for miRNA-mediated repression.

RESULTS

Using sequence data from whole-genome cDNA alignments we identified 1418 uAUG sequences on the 5'-UTR that specifically interact with 3'-ends of conserved miRNAs. We computationally identified miRNAs that can target six genes through their uAUGs that were previously reported to suppress translation. We extended this meta-analysis by confirming expression of these miRNAs in cell-lines used in the uAUG studies. Similarly, seven members of the KLF family of genes containing uAUGs were computationally identified as interacting with several miRNAs. Using KLF9 as an example (whose protein expression is limited to brain tissue despite the mRNA being expressed ubiquitously), we show computationally that miRNAs expressed only in HeLa cells and not in neuroblastoma (N2A) cells can bind the uAUGs responsible for translation inhibition. Our computed results demonstrate that tissue- or cell-line specific repression of protein translation by uAUGs can be explained by the presence or absence of miRNAs that target these uAUG sequences. We propose that these uAUGs represent a subset of miRNA interaction sites on 5'-UTRs in miBridge, whereby a miRNA binding a uAUG hinders the progression of ribosome scanning the mRNA before it reaches the open reading frame (ORF).

CONCLUSIONS

While both miRNAs and uAUGs are separately known to down-regulate protein expression, we show that they may be functionally related by identifying potential interactions through a sequence-specific binding mechanism. Using prior experimental evidence that shows uAUG effects on translation repression together with miRNA expression data specific to cell lines, we demonstrate through computational analysis that cell-specific down-regulation of protein expression (while maintaining mRNA levels) correlates well with the simultaneous presence of miRNA and target uAUG sequences in one cell type and not others, suggesting tissue-specific translation repression by miRNAs through uAUGs.

摘要

背景

微小 RNA(miRNA)是内源性的小 RNA,通过结合 3'-UTR 中的互补位点在转录后水平调节基因表达。在最近的一项全基因组研究报告了一个新的 miRNA 靶类(miBridge)中,我们鉴定并验证了 5'-UTR 与 miRNA 之间的相互作用。另外,5'-UTR 中的上游 AUG(uAUG)已知可在不影响 mRNA 水平的情况下进行基因翻译调控,这是 miRNA 介导抑制的机制之一。

结果

使用全基因组 cDNA 比对的序列数据,我们在 5'-UTR 上鉴定了 1418 个特定于与保守 miRNA 的 3'-末端相互作用的 uAUG 序列。我们通过计算鉴定了可以通过其 uAUG 靶向六个先前报道抑制翻译的基因的 miRNA。我们通过确认这些 miRNA 在 uAUG 研究中使用的细胞系中的表达来扩展了这个元分析。同样,含有 uAUG 的 KLF 家族的七个基因也被计算鉴定为与几个 miRNA 相互作用。以 KLF9 为例(尽管其 mRNA 广泛表达,但蛋白质表达仅限于脑组织),我们通过计算表明,仅在 HeLa 细胞中表达而不在神经母细胞瘤(N2A)细胞中表达的 miRNA 可以结合负责翻译抑制的 uAUG。我们的计算结果表明,uAUG 对蛋白质翻译的组织或细胞系特异性抑制可以通过存在或不存在靶向这些 uAUG 序列的 miRNA 来解释。我们提出这些 uAUG 代表 miBridge 中 5'-UTR 上 miRNA 相互作用位点的一个子集,其中 miRNA 结合 uAUG 会阻碍核糖体在到达开放阅读框(ORF)之前扫描 mRNA 的进程。

结论

虽然 miRNA 和 uAUG 都分别已知可下调蛋白质表达,但我们通过鉴定通过序列特异性结合机制的潜在相互作用表明它们可能具有功能相关性。使用先前的实验证据表明 uAUG 对翻译抑制的影响以及特定于细胞系的 miRNA 表达数据,我们通过计算分析表明,在一种细胞类型中存在 miRNA 和靶 uAUG 序列而在其他细胞类型中不存在时,细胞特异性的蛋白质表达下调(同时保持 mRNA 水平)与组织特异性翻译抑制通过 miRNA 通过 uAUG 非常吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b08/2842251/c1b8c7f14ac5/1471-2164-11-155-1.jpg

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