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The pioneer translation initiation complex is functionally distinct from but structurally overlaps with the steady-state translation initiation complex

机译:先锋翻译起始复合物在功能上与稳态翻译起始复合物不同但在结构上重叠

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摘要

The bulk of cellular proteins derive from the translation of eukaryotic translation initiation factor (eIF)4E-bound mRNA. However, recent studies of nonsense-mediated mRNA decay (NMD) indicate that cap-binding protein (CBP)80-bound mRNA, which is a precursor to eIF4E-bound mRNA, can also be translated during a pioneer round of translation. Here, we report that the pioneer round, which can be assessed by measuring NMD, is not inhibited by 4E-BP1, which is known to inhibit steady-state translation by competing with eIF4G for binding to eIF4E. Therefore, at least in this way, the pioneer round of translation is distinct from steady-state translation. eIF4GI, poly(A)-binding protein (PABP)1, eIF3, eIF4AI, and eIF2α coimmunopurify with both CBP80 and eIF4E, which suggests that each factor functions in both modes of translation. Consistent with roles for PABP1 and eIF2α in the pioneer round of translation, PABP-interacting protein 2, which is known to destabilize PABP1 binding to poly(A) and inhibit steady-state translation, as well as inactive eIF2α, which is also known to inhibit steady-state translation, also inhibit NMD. Polysome profiles indicate that CBP80-bound mRNAs are translated less efficiently than their eIF4E-bound counterparts.
机译:细胞蛋白的大部分来源于真核翻译起始因子(eIF)4 E绑定的mRNA的翻译。但是,最近对无意义介导的mRNA衰变(NMD)的研究表明,帽结合蛋白(CBP)80结合的mRNA是eIF4E结合的mRNA的前体,也可以在先驱的翻译过程中进行翻译。在这里,我们报告说,可以通过测量NMD进行评估的先锋轮并没有受到4E-BP1的抑制,而4E-BP1可以通过与eIF4G竞争结合eIF4E来抑制稳态翻译。因此,至少以这种方式,翻译的先驱者不同于稳态翻译。 eIF4GI,poly(A)结合蛋白(PABP)1,eIF3,eIF4AI和eIF2α与CBP80和eIF4E共同免疫纯化,这表明每种因子在两种翻译模式中均起作用。与PABP1和eIF2α在翻译的先驱阶段中的作用一致,已知PABP相互作用蛋白2使PABP1与poly(A)的结合不稳定并抑制稳态翻译,以及失活的eIF2α,这也已知抑制稳态翻译,也抑制NMD。多核糖体图谱表明结合CBP80的mRNA的翻译效率低于结合eIF4E的mRNA。

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