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不同剪接变体的 Disc large 1 肿瘤抑制因子 5'-UTR 对翻译效率的调控。

Regulation of translational efficiency by different splice variants of the Disc large 1 oncosuppressor 5'-UTR.

机构信息

Instituto de Biología Molecular y Celular de Rosario-CONICET, Facultad de Ciencias Bioquímicas y Farmacéuticas, Rosario, Argentina.

出版信息

FEBS J. 2011 Jul;278(14):2596-608. doi: 10.1111/j.1742-4658.2011.08188.x. Epub 2011 Jun 13.

Abstract

Human Disc large (DLG1) has been demonstrated to be involved in the control of cell polarity and maintenance of tissue architecture, and is frequently lost in human tumours. However, the mechanisms controlling DLG1 expression are poorly understood. To further examine the regulation of DLG1 expression, we analysed the 5' ends of DLG1 transcripts by rapid amplification of cDNA ends polymerase chain reaction. We identified an alternative splicing event in the 5' region of DLG1 mRNA that generates transcripts with two different 5' untranslated regions (5'-UTRs). We show by reporter assays that the DLG1 5'-UTR containing an alternatively spliced exon interferes with the translation of a downstream open reading frame (ORF). However, no significant differences in mRNA stability among the DLG1 5'-UTR variants were observed. Sequence analysis of the additional exon present in the larger DLG1 5'-UTR showed the presence of an upstream short ORF which is lost in the short version of the 5'-UTR DLG1. By mutagenesis and luciferase assays, we analysed the contribution of this upstream short ORF in reducing translation efficiency, and showed that its disruption can revert, to some extent, the negative regulation of large 5'-UTR. Using computational modelling we also show that the large DLG1 5'-UTR isoform forms a more stable structure than the short version, and this may contribute to its ability to repress translation. This represents the first analysis of the 5' region of the DLG1 transcripts and shows that differential expression of alternatively spliced 5'-UTRs with different translational properties could result in changes in DLG1 abundance.

摘要

人 Disc 大 (DLG1) 已被证明参与控制细胞极性和维持组织结构,并且经常在人类肿瘤中丢失。然而,控制 DLG1 表达的机制还知之甚少。为了进一步研究 DLG1 表达的调控,我们通过快速扩增 cDNA 末端聚合酶链反应分析了 DLG1 转录物的 5'端。我们在 DLG1 mRNA 的 5'区域鉴定出一种选择性剪接事件,该事件产生具有两个不同 5'非翻译区 (5'-UTR) 的转录本。我们通过报告基因实验表明,包含选择性剪接外显子的 DLG1 5'-UTR 会干扰下游开放阅读框 (ORF) 的翻译。然而,在 DLG1 5'-UTR 变体中,mRNA 稳定性没有观察到显著差异。在较大的 DLG1 5'-UTR 中存在的额外外显子的序列分析表明存在一个上游短 ORF,该 ORF 在较短的 5'-UTR DLG1 中丢失。通过突变和荧光素酶测定,我们分析了该上游短 ORF 在降低翻译效率中的贡献,并表明其破坏可以在某种程度上逆转大 5'-UTR 的负调节。我们还使用计算建模表明,较大的 DLG1 5'-UTR 异构体形成比短版本更稳定的结构,这可能有助于其抑制翻译的能力。这代表了对 DLG1 转录物 5'区域的首次分析,表明具有不同翻译性质的选择性剪接 5'-UTRs 的差异表达可能导致 DLG1 丰度的变化。

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