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Scp160p is required for translational efficiency of codon-optimized mRNAs in yeast

机译:酵母中密码子优化的mRNA的翻译效率需要Scp160p

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The budding yeast multi-K homology domain RNA-binding protein Scp160p binds to 1000 messenger RNAs (mRNAs) and polyribosomes, and its mammalian homolog vigilin binds transfer RNAs (tRNAs) and translation elongation factor EF1alpha. Despite its implication in translation, studies on Scp160p's molecular function are lacking to date. We applied translational profiling approaches and demonstrate that the association of a specific subset of mRNAs with ribosomes or heavy polysomes depends on Scp160p. Interaction of Scp160p with these mRNAs requires the conserved K homology domains 13 and 14. Transfer RNA pairing index analysis of Scp160p target mRNAs indicates a high degree of consecutive use of iso-decoding codons. As shown for one target mRNA encoding the glycoprotein Pry3p, Scp160p depletion results in translational downregulation but increased association with polysomes, suggesting that it is required for efficient translation elongation. Depletion of Scp160p also decreased the relative abundance of ribosome-associated tRNAs whose codons show low potential for autocorrelation on mRNAs. Conversely, tRNAs with highly autocorrelated codons in mRNAs are less impaired. Our data indicate that Scp160p might increase the efficiency of tRNA recharge, or prevent diffusion of discharged tRNAs, both of which were also proposed to be the likely basis for the translational fitness effect of tRNA pairing.
机译:出芽的酵母多K同源域RNA结合蛋白Scp160p与> 1000信使RNA(mRNA)和多核糖体结合,而其哺乳动物同源维吉林则与转移RNA(tRNA)和翻译延伸因子EF1alpha结合。尽管它涉及翻译,但迄今为止尚缺乏有关Scp160p分子功能的研究。我们应用了翻译谱分析方法,并证明了mRNA的特定子集与核糖体或重链多核糖体的关联取决于Scp160p。 Scp160p与这些mRNA的相互作用需要保守的K同源结构域13和14。Scp160p靶mRNA的转移RNA配对指数分析表明,高度连续使用同等密码子。如图所示,对于编码糖蛋白Pry3p的一种靶标mRNA,Scp160p耗竭导致翻译下调,但与多核糖体的结合增加,这表明它是有效翻译延伸所必需的。 Scp160p的消耗也减少了与核糖体相关的tRNA的相对丰度,其密码子在mRNA上显示出自相关的低潜力。相反,在mRNA中具有高度自相关密码子的tRNA受损害较小。我们的数据表明,Scp160p可能会提高tRNA的补给效率,或阻止排出的tRNA的扩散,这两者都被认为是tRNA配对翻译适应性效应的可能依据。

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