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首页> 外文期刊>Plant Physiology >Evidence for Variation in the Optimal Translation Initiation Complex: Plant eIF4B, eIF4F, and eIF(iso)4F Differentially Promote Translation of mRNAs1,[OA]
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Evidence for Variation in the Optimal Translation Initiation Complex: Plant eIF4B, eIF4F, and eIF(iso)4F Differentially Promote Translation of mRNAs1,[OA]

机译:最佳翻译起始复合物变异的证据:植物eIF4B,eIF4F和eIF(iso)4F差异促进mRNAs1,[OA]的翻译

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摘要

Eukaryotic initiation factor (eIF) 4B is known to interact with multiple initiation factors, mRNA, rRNA, and poly(A) binding protein (PABP). To gain a better understanding of the function of eIF4B, the two isoforms from Arabidopsis (Arabidopsis thaliana) were expressed and analyzed using biophysical and biochemical methods. Plant eIF4B was found by ultracentrifugation and light scattering analysis to most likely be a monomer with an extended structure. An extended structure would facilitate the multiple interactions of eIF4B with mRNA as well as other initiation factors (eIF4A, eIF4G, PABP, and eIF3). Eight mRNAs, barley (Hordeum vulgare) -amylase mRNA, rabbit β-hemoglobin mRNA, Arabidopsis heat shock protein 21 (HSP21) mRNA, oat (Avena sativa) globulin, wheat (Triticum aestivum) germin, maize (Zea mays) alcohol dehydrogenase, satellite tobacco necrosis virus RNA, and alfalfa mosaic virus (AMV) 4, were used in wheat germ in vitro translation assays to measure their dependence on eIF4B and eIF4F isoforms. The two Arabidopsis eIF4B isoforms, as well as native and recombinant wheat eIF4B, showed similar responses in the translation assay. AMV RNA 4 and Arabidopsis HSP21 showed only a slight dependence on the presence of eIF4B isoforms, whereas rabbit β-hemoglobin mRNA and wheat germin mRNA showed modest dependence. Barley -amylase, oat globulin, and satellite tobacco necrosis virus RNA displayed the strongest dependence on eIF4B. These results suggest that eIF4B has some effects on mRNA discrimination during initiation of translation. Barley -amylase, oat globulin, and rabbit β-hemoglobin mRNA showed the highest activity with eIF4F, whereas Arabidopsis HSP21 and AMV RNA 4 used both eIF4F and eIF(iso)4F equally well. These results suggest that differential or optimal translation of mRNAs may require initiation complexes composed of specific isoforms of initiation factor gene products. Thus, individual mRNAs or classes of mRNAs may respond to the relative abundance of a particular initiation factor(s), which in turn may affect the amount of protein translated. It is likely that optimal multifactor initiation complexes exist that allow for optimal translation of mRNAs under a variety of cellular conditions.
机译:已知真核起始因子(eIF)4B与多种起始因子,mRNA,rRNA和poly(A)结合蛋白(PABP)相互作用。为了更好地了解eIF4B的功能,使用生物物理和生化方法表达和分析了拟南芥(Arabidopsis thaliana)的两种同工型。通过超速离心和光散射分析发现植物eIF4B最有可能是具有延伸结构的单体。扩展的结构将促进eIF4B与mRNA和其他起始因子(eIF4A,eIF4G,PABP和eIF3)的多重相互作用。八个mRNA,大麦(Hordeum vulgare)-淀粉酶mRNA,兔β-血红蛋白mRNA,拟南芥热休克蛋白21(HSP21)mRNA,燕麦(Avena sativa)球蛋白,小麦(Triticum aestivum)胚芽,玉米(Zea mays),卫星烟草坏死病毒RNA和苜蓿花叶病毒(AMV)4用于小麦胚芽体外翻译测定,以测量其对eIF4B和eIF4F同工型的依赖性。两种拟南芥eIF4B同工型以及天然和重组小麦eIF4B在翻译分析中显示出相似的响应。 AMV RNA 4和拟南芥HSP21仅对eIF4B亚型的存在有轻微的依赖性,而兔β-血红蛋白mRNA和小麦胚芽mRNA则显示适度的依赖性。大麦淀粉酶,燕麦球蛋白和卫星烟草坏死病毒RNA显示出对eIF4B的最强依赖性。这些结果表明,eIF4B在翻译起始过程中对mRNA的识别有一定影响。大麦淀粉酶,燕麦球蛋白和兔β-血红蛋白mRNA在eIF4F上显示出最高的活性,而拟南芥HSP21和AMV RNA 4同样很好地使用eIF4F和eIF(iso)4F。这些结果表明,mRNA的差异翻译或最佳翻译可能需要由起始因子基因产物的特定同工型组成的起始复合物。因此,个别的mRNA或mRNA类别可以响应特定起始因子的相对丰度,这反过来又可能影响翻译的蛋白质的量。可能存在最佳的多因素起始复合物,可以在各种细胞条件下实现mRNA的最佳翻译。

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