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Codon usage biases co-evolve with transcription termination machinery to suppress premature cleavage and polyadenylation

机译:密码子使用偏倚与转录终止机制共同发展,以抑制过早裂解和聚腺苷酸化

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摘要

Codon usage biases are found in all genomes and influence protein expression levels. The codon usage effect on protein expression was thought to be mainly due to its impact on translation. Here, we show that transcription termination is an important driving force for codon usage bias in eukaryotes. Using Neurospora crassa as a model organism, we demonstrated that introduction of rare codons results in premature transcription termination (PTT) within open reading frames and abolishment of full-length mRNA. PTT is a wide-spread phenomenon in Neurospora, and there is a strong negative correlation between codon usage bias and PTT events. Rare codons lead to the formation of putative poly(A) signals and PTT. A similar role for codon usage bias was also observed in mouse cells. Together, these results suggest that codon usage biases co-evolve with the transcription termination machinery to suppress premature termination of transcription and thus allow for optimal gene expression.
机译:在所有基因组中均发现密码子使用偏倚并影响蛋白质表达水平。人们认为密码子对蛋白质表达的影响主要是由于其对翻译的影响。在这里,我们表明转录终止是真核生物密码子使用偏见的重要驱动力。使用Neurospora crassa作为模型生物,我们证明了引入稀有密码子会导致开放阅读框内的过早转录终止(PTT)和全长mRNA的废除。 PTT在Neurospora中是一种广泛传播的现象,密码子使用偏倚与PTT事件之间存在很强的负相关性。稀有密码子导致推定的poly(A)信号和PTT的形成。在小鼠细胞中也观察到密码子使用偏倚的相似作用。总之,这些结果表明,密码子使用偏倚与转录终止机制共同发展,以抑制转录的过早终止,从而实现最佳的基因表达。

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