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Insilico Codon Bias Correction for Transgenic Biological Protein Sequences for Vaccine Production

机译:用于疫苗生产的转基因生物蛋白质序列的Insilico密码子偏倚校正

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Codon optimization is primarily used in enhancing the levels of protein expression in the host species. Each species has its own codon usage bias, which represents the codons abundance frequency in that species. Using the host usage profile contributes to personalize the synthesis of the DNA vaccines that can achieve highly active vectors the host cells. For optimizing protein expression levels in a particular host, the genetic code sequence needs correction of codon frequency bias to match the expression of host codon landscape rather than the donating organism profile. In this work, we have applied two approaches for optimizing codon usage in protein-coding sequences. The first approach adopts a substitution-based method to replace less frequent codons with differentially higher frequency codons at the specific codon usage bias tables. The second approach finds and replaces the maximal exact protein matches between the unoptimized sequence and the host proteome. We evaluated our work by optimizing the Avian Influenza H1N1 virus’s HA gene to maximize the protein expression before synthesizing the DNA vaccine. Our method produced optimized sequences with higher GC content by 17%, which is similar to eukaryotic sequence profiles than the viral usage profiles, allowing for better expression in avian host cells.
机译:密码子优化主要用于增强宿主物种中蛋白质表达的水平。每个物种都有其自己的密码子使用偏倚,它代表该物种中的密码子丰度频率。使用宿主的使用情况有助于个性化DNA疫苗的合成,该疫苗可实现宿主细胞的高活性载体。为了优化特定宿主中的蛋白质表达水平,遗传密码序列需要校正密码子频率偏倚以匹配宿主密码子景观的表达,而不是捐赠生物的概况。在这项工作中,我们应用了两种方法来优化蛋白质编码序列中的密码子使用。第一种方法采用基于替换的方法,以在特定密码子使用偏好表中以频率较高的差分密码子替换频率较低的密码子。第二种方法是查找并替换未优化序列与宿主蛋白质组之间的最大精确蛋白质匹配。在合成DNA疫苗之前,我们通过优化禽流感H1N1病毒的HA基因以最大化蛋白质表达来评估我们的工作。我们的方法产生的优化序列具有更高的GC含量达17%,与病毒使用情况相似,与真核生物序列相似,可以在禽类宿主细胞中更好地表达。

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