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Evolution of Viral Proteins Originated De Novo by Overprinting

机译:从头开始从头开始的病毒蛋白的进化

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New protein-coding genes can originate either through modification of existing genes or de novo. Recently, the importance of de novo origination has been recognized in eukaryotes, although eukaryotic genes originated de novo are relatively rare and difficult to identify. In contrast, viruses contain many de novo genes, namely those in which an existing gene has been “overprinted” by a new open reading frame, a process that generates a new protein-coding gene overlapping the ancestral gene. We analyzed the evolution of 12 experimentally validated viral genes that originated de novo and estimated their relative ages. We found that young de novo genes have a different codon usage from the rest of the genome. They evolve rapidly and are under positive or weak purifying selection. Thus, young de novo genes might have strain-specific functions, or no function, and would be difficult to detect using current genome annotation methods that rely on the sequence signature of purifying selection. In contrast to young de novo genes, older de novo genes have a codon usage that is similar to the rest of the genome. They evolve slowly and are under stronger purifying selection. Some of the oldest de novo genes evolve under stronger selection pressure than the ancestral gene they overlap, suggesting an evolutionary tug of war between the ancestral and the de novo gene.
机译:新的蛋白质编码基因可以通过修饰现有基因或从头开始。近来,尽管从头起源的真核基因相对罕见并且难以鉴定,但在真核生物中已经认识到从头起源的重要性。相反,病毒包含许多从头基因,即那些其中的现有基因已被新的开放阅读框“叠印”的基因,该过程会产生一个与祖先基因重叠的新蛋白质编码基因。我们分析了从头开始的12个经过实验验证的病毒基因的进化,并估计了它们的相对年龄。我们发现年轻的从头基因与其余基因组具有不同的密码子用法。它们迅速进化,处于正选择或弱选择的选择之下。因此,年轻的从头基因可能具有菌株特异性功能,或者没有功能,并且将难以使用依赖纯化选择的序列特征的当前基因组注释方法来检测。与年轻的从头基因相反,较早的从头基因具有与基因组其余部分相似的密码子用法。它们进化缓慢,并且处于更强的纯化选择之下。一些最古老的新生基因比它们重叠的祖先基因在更强的选择压力下进化,这表明祖先和新生基因之间的进化拔河。

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