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mRNA 异构体多样性可能会掩盖 miRNA 介导的翻译调控的检测。

mRNA isoform diversity can obscure detection of miRNA-mediated control of translation.

机构信息

Molecular Genetics Division, Victor Chang Cardiac Research Institute, Darlinghurst, NSW 2010, Australia.

出版信息

RNA. 2011 Jun;17(6):1025-31. doi: 10.1261/rna.2567611. Epub 2011 Apr 5.

Abstract

Reporter-based studies support inhibition of translation at the level of initiation as a substantial component of the miRNA mechanism, yet recent global analyses have suggested that they predominantly act through decreasing target mRNA stability. Cells commonly coexpress several processing isoforms of an mRNA, which may also differ in their regulatory untranslated regions (UTR). In particular, cancer cells are known to express high levels of short 3' UTR isoforms that evade miRNA-mediated regulation, whereas longer 3' UTRs predominate in nontransformed cells. To test whether mRNA isoform diversity can obscure detection of miRNA-mediated control at the level of translation, we assayed the responses of 11 endogenous let-7 targets to inactivation of this miRNA in HeLa cells, an intensively studied model system. We show that translational regulation in many cases appears to be modest when measuring the composite polysome profile of all extant isoforms of a given mRNA by density ultracentrifugation. In contrast, we saw clear effects at the level of translation initiation for multiple examples when selectively profiling mRNA isoforms carrying the 5' or 3' untranslated regions that were actually permissive to let-7 action, or when let-7 and a second targeting miRNA were jointly manipulated. Altogether, these results highlight a caveat to the mechanistic interpretation of data from global miRNA target analyses in transformed cells. Importantly, they reaffirm the importance of translational control as part of the miRNA mechanism in animal cells.

摘要

基于报道者的研究支持将翻译起始水平的抑制作为 miRNA 机制的一个重要组成部分,但最近的全球分析表明,它们主要通过降低靶 mRNA 的稳定性来发挥作用。细胞通常共表达一种 mRNA 的几种加工同工型,这些同工型在其非翻译调节区(UTR)中也可能不同。特别是,众所周知,癌细胞表达高水平的逃避 miRNA 调节的短 3'UTR 同工型,而较长的 3'UTR 在非转化细胞中占主导地位。为了测试 mRNA 同工型多样性是否会掩盖 miRNA 介导的翻译水平调控的检测,我们在 HeLa 细胞中检测了 11 种内源性 let-7 靶标对该 miRNA 失活的反应,这是一个经过深入研究的模型系统。我们表明,通过密度超速离心测定给定 mRNA 的所有现存同工型的复合多核糖体图谱时,许多情况下翻译调控似乎是适度的。相比之下,当我们选择性地对实际上允许 let-7 作用的 5'或 3'UTR 携带的 mRNA 同工型进行分析,或者当 let-7 和第二种靶向 miRNA 被联合操作时,我们看到了多个例子在翻译起始水平上的明显影响。总之,这些结果突出了在转化细胞中对全球 miRNA 靶标分析数据进行机制解释的一个注意事项。重要的是,它们重申了在动物细胞中作为 miRNA 机制的一部分进行翻译控制的重要性。

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