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hnRNP-Q 通过一种新型 poly(A) 结合蛋白对翻译和 miRNA 依赖的抑制作用进行调控。

Control of translation and miRNA-dependent repression by a novel poly(A) binding protein, hnRNP-Q.

机构信息

Department of Biochemistry and Goodman Cancer Research Centre, McGill University, Montreal, Quebec, Canada.

出版信息

PLoS Biol. 2013;11(5):e1001564. doi: 10.1371/journal.pbio.1001564. Epub 2013 May 21.

Abstract

Translation control often operates via remodeling of messenger ribonucleoprotein particles. The poly(A) binding protein (PABP) simultaneously interacts with the 3' poly(A) tail of the mRNA and the eukaryotic translation initiation factor 4G (eIF4G) to stimulate translation. PABP also promotes miRNA-dependent deadenylation and translational repression of target mRNAs. We demonstrate that isoform 2 of the mouse heterogeneous nuclear protein Q (hnRNP-Q2/SYNCRIP) binds poly(A) by default when PABP binding is inhibited. In addition, hnRNP-Q2 competes with PABP for binding to poly(A) in vitro. Depleting hnRNP-Q2 from translation extracts stimulates cap-dependent and IRES-mediated translation that is dependent on the PABP/poly(A) complex. Adding recombinant hnRNP-Q2 to the extracts inhibited translation in a poly(A) tail-dependent manner. The displacement of PABP from the poly(A) tail by hnRNP-Q2 impaired the association of eIF4E with the 5' m(7)G cap structure of mRNA, resulting in the inhibition of 48S and 80S ribosome initiation complex formation. In mouse fibroblasts, silencing of hnRNP-Q2 stimulated translation. In addition, hnRNP-Q2 impeded let-7a miRNA-mediated deadenylation and repression of target mRNAs, which require PABP. Thus, by competing with PABP, hnRNP-Q2 plays important roles in the regulation of global translation and miRNA-mediated repression of specific mRNAs.

摘要

翻译控制通常通过信使核糖核蛋白颗粒的重塑来进行。多聚腺苷酸结合蛋白(PABP)同时与 mRNA 的 3' 多聚腺苷酸尾巴和真核翻译起始因子 4G(eIF4G)相互作用,以刺激翻译。PABP 还促进 miRNA 依赖性靶 mRNA 的腺苷酸化和翻译抑制。我们证明,当 PABP 结合被抑制时,小鼠异质核蛋白 Q(hnRNP-Q2/SYNCRIP)的同工型 2 默认结合 poly(A)。此外,hnRNP-Q2 在体外与 PABP 竞争结合 poly(A)。从翻译提取物中耗尽 hnRNP-Q2 可刺激依赖 PABP/poly(A) 复合物的帽依赖性和 IRES 介导的翻译。将重组 hnRNP-Q2 添加到提取物中以 poly(A) 尾巴依赖性方式抑制翻译。hnRNP-Q2 将 PABP 从 poly(A) 尾巴上置换出来,破坏了 eIF4E 与 mRNA 5' m(7)G 帽结构的结合,导致 48S 和 80S 核糖体起始复合物的形成受到抑制。在小鼠成纤维细胞中,hnRNP-Q2 的沉默刺激了翻译。此外,hnRNP-Q2 阻碍了 let-7a miRNA 介导的靶 mRNA 的腺苷酸化和抑制,这需要 PABP。因此,hnRNP-Q2 通过与 PABP 竞争,在调节全局翻译和 miRNA 介导的特定 mRNA 抑制方面发挥重要作用。

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