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Let-7a 调控的哺乳动物 AGO1 翻译通读产生一种 microRNA 通路抑制剂。

Let-7a-regulated translational readthrough of mammalian AGO1 generates a microRNA pathway inhibitor.

机构信息

Department of Biochemistry, Indian Institute of Science, Bengaluru, Karnataka, India.

Department of Microbiology and Cell Biology, Indian Institute of Science, Bengaluru, Karnataka, India.

出版信息

EMBO J. 2019 Aug 15;38(16):e100727. doi: 10.15252/embj.2018100727. Epub 2019 Jul 22.

Abstract

Translational readthrough generates proteins with extended C-termini, which often possess distinct properties. Here, we have used various reporter assays to demonstrate translational readthrough of AGO1 mRNA. Analysis of ribosome profiling data and mass spectrometry data provided additional evidence for translational readthrough of AGO1. The endogenous readthrough product, Ago1x, could be detected by a specific antibody both in vitro and in vivo. This readthrough process is directed by a cis sequence downstream of the canonical AGO1 stop codon, which is sufficient to drive readthrough even in a heterologous context. This cis sequence has a let-7a miRNA-binding site, and readthrough is promoted by let-7a miRNA. Interestingly, Ago1x can load miRNAs on target mRNAs without causing post-transcriptional gene silencing, due to its inability to interact with GW182. Because of these properties, Ago1x can serve as a competitive inhibitor of miRNA pathway. In support of this, we observed increased global translation in cells overexpressing Ago1x. Overall, our results reveal a negative feedback loop in the miRNA pathway mediated by the translational readthrough product of AGO1.

摘要

翻译通读会生成具有延伸 C 末端的蛋白质,这些蛋白质通常具有独特的性质。在这里,我们使用各种报告基因检测方法来证明 AGO1 mRNA 的翻译通读。核糖体图谱数据分析和质谱数据分析提供了额外的证据证明 AGO1 的翻译通读。内源性通读产物 Ago1x 可以在体外和体内通过特异性抗体检测到。这个通读过程是由 AGO1 终止密码子下游的顺式序列指导的,即使在异源环境中,这个顺式序列也足以驱动通读。这个顺式序列有一个 let-7a miRNA 结合位点,let-7a miRNA 可以促进通读。有趣的是,由于 Ago1x 无法与 GW182 相互作用,因此它可以在不引起转录后基因沉默的情况下将 miRNA 加载到靶 mRNA 上。由于这些特性,Ago1x 可以作为 miRNA 通路的竞争性抑制剂。支持这一点的是,我们观察到过表达 Ago1x 的细胞中整体翻译增加。总的来说,我们的结果揭示了 AGO1 翻译通读产物介导的 miRNA 通路中的负反馈环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7be/6694283/a8f25ac3a270/EMBJ-38-e100727-g002.jpg

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