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首页> 外文期刊>FEBS Letters >Expression of the translation termination factor eRF1 is autoregulated by translational readthrough and 3'UTR intron‐mediated NMD in Neurospora crassa
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Expression of the translation termination factor eRF1 is autoregulated by translational readthrough and 3'UTR intron‐mediated NMD in Neurospora crassa

机译:翻译终止因子ERF1的表达通过平移升高和3'UTR内含子介导的NMD在神经孢子中自动调用

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摘要

Eukaryotic release factor 1 (eRF1) is a translation termination factor that binds to the ribosome at stop codons. The expression of eRF1 is strictly controlled, since its concentration defines termination efficiency and frequency of translational readthrough. Here, we show that eRF1 expression in Neurospora crassa is controlled by an autoregulatory circuit that depends on the specific 3'UTR structure of erf1 mRNA. The stop codon context of erf1 promotes readthrough that protects the mRNA from its 3'UTR‐induced nonsense‐mediated mRNA decay (NMD). High eRF1 concentration leads to inefficient readthrough, thereby allowing NMD‐mediated erf1 degradation. We propose that eRF1 expression is controlled by similar autoregulatory circuits in many fungi and seed plants and discuss the evolution of autoregulatory systems of different translation termination factors.
机译:真核释放因子1(ERF1)是在止挡密码子上与核糖体结合的翻译终止因子。严格控制ERF1的表达,因为其浓度定义了终止效率和平移升高的频率。在这里,我们表明Neurospora Crassa中的ERF1表达由自动调节电路控制,这取决于ERF1 mRNA的特异性3'UTR结构。 ERF1的终止密码子上下文促进引程,从其3'UTR诱导的废话介导的mRNA衰变(NMD)保护mRNA。高ERF1浓度导致效率低度升高,从而允许NMD介导的ERF1降解。我们提出ERF1表达由许多真菌和种子植物中的类似自动调节电路控制,并讨论了不同翻译终止因素的自动调节系统的演变。

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