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Remodeling of the pioneer translation initiation complex involves translation and the karyopherin importin β

机译:先驱翻译起始复合体的重塑涉及翻译和核转运蛋白输入蛋白β

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Mammalian mRNAs lose and acquire proteins throughout their life span while undergoing processing, transport, translation, and decay. How translation affects messenger RNA (mRNA)–protein interactions is largely unknown. The pioneer round of translation uses newly synthesized mRNA that is bound by cap-binding protein 80 (CBP80)–CBP20 (also known as the cap-binding complex [CBC]) at the cap, poly(A)-binding protein N1 (PABPN1) and PABPC1 at the poly(A) tail, and, provided biogenesis involves pre-mRNA splicing, exon junction complexes (EJCs) at exon–exon junctions. Subsequent rounds of translation engage mRNA that is bound by eukaryotic translation initiation factor 4E (eIF4E) at the cap and PABPC1 at the poly(A) tail, but that lacks detectable EJCs and PABPN1. Using the level of intracellular iron to regulate the translation of specific mRNAs, we show that translation promotes not only removal of EJC constituents, including the eIF4AIII anchor, but also replacement of PABPN1 by PABPC1. Remarkably, translation does not affect replacement of CBC by eIF4E. Instead, replacement of CBC by eIF4E is promoted by importin β (IMPβ): Inhibiting the binding of IMPβ to the complex of CBC–IMPα at an mRNA cap using the IMPα IBB (IMPβ-binding) domain or a RAN variant increases the amount of CBC-bound mRNA and decreases the amount of eIF4E-bound mRNA. Our studies uncover a previously unappreciated role for IMPβ and a novel paradigm for how newly synthesized messenger ribonucleoproteins (mRNPs) are matured.
机译:哺乳动物的mRNA在其整个生命周期中会丢失并获得蛋白质,同时会经历加工,运输,翻译和衰变。翻译如何影响信使RNA(mRNA)-蛋白质相互作用尚不清楚。翻译的先驱者使用了新合成的mRNA,其在帽,聚(A)结合蛋白N1(PABPN1)处与帽结合蛋白80(CBP80)–CBP20(也称为帽结合复合物[CBC])结合)和PABPC1在poly(A)尾部,并且,如果生物发生涉及mRNA之前的剪接,则在外显子-外显子连接处有外显子连接复合体(EJCs)。随后的几轮翻译与在帽处被真核翻译起始因子4E(eIF4E)和在poly(A)尾部被PABPC1结合的mRNA结合,但是缺少可检测的EJC和PABPN1。使用细胞内铁的水平来调节特定mRNA的翻译,我们表明翻译不仅促进EJC成分(包括eIF4AIII锚)的去除,而且还促进了PABPN1被PABPC1取代。值得注意的是,翻译不会影响eIF4E替代CBC。相反,输入蛋白β(IMPβ)促进了用eIF4E替代CBC:使用IMPαIBB(IMPβ-binding)结构域或RAN变体在mRNA帽上抑制IMPβ与CBC–IMPα的复合物的结合,从而增加了CBC结合的mRNA和减少eIF4E结合的mRNA的数量。我们的研究揭示了IMPβ以前所没有的作用,以及新合成的信使核糖核蛋白(mRNPs)如何成熟的新范式。

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