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首页> 外文期刊>Virus Genes >Optimization of codon usage of poxvirus genes allows for improved transient expression in mammalian cells.
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Optimization of codon usage of poxvirus genes allows for improved transient expression in mammalian cells.

机译:痘病毒基因密码子使用的优化可改善哺乳动物细胞中的瞬时表达。

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Transient expression of viral genes from certain poxviruses in uninfected mammalian cells can sometimes be unexpectedly inefficient. The reasons for poor expression levels can be due to a number of features of the gene cassette, such as cryptic splice sites, polymerase II termination sequences or motifs that lead to mRNA instability. Here we suggest that in some cases the problem of low protein expression in transfected mammalian cells may be due to inefficient codon usage. We have observed that for many poxvirus genes from the yatapoxvirus genus this deficiency can be overcome by synthesis of the gene with codon sequences optimized for expression in primate cells. This led us to examine colon usage across 2-dozen sequenced members of the Poxviridae. We conclude that codon usage is surprisingly divergent across the different Poxviridae genera but is much more conserved within a single genus. Thus, Poxviridae genera can be divided into distinct groups based on their observed codon bias. When viewed in this context, successful transient expression of transfected poxvirus genes in uninfected mammalian cells can be more accurately predicted based on codon bias. As a corollary, for specific poxvirus genes with less favorable codon usage, codon optimization can result in profoundly increased transient expression levels following transfection of uninfected mammalian cell lines.
机译:来自某些痘病毒的病毒基因在未感染的哺乳动物细胞中的瞬时表达有时可能出乎意料地效率低下。表达水平差的原因可能是由于基因盒的许多特征,例如隐蔽的剪接位点,聚合酶II终止序列或导致mRNA不稳定的基序。在这里,我们建议在某些情况下,转染的哺乳动物细胞中低蛋白表达的问题可能是由于密码子使用效率低下所致。我们已经观察到,对于许多来自雅特痘病毒属的痘病毒基因,可以通过合成具有针对灵长类细胞表达而优化的密码子序列的基因来克服这一缺陷。这导致我们检查了痘病毒科2个测序成员之间的结肠使用情况。我们得出的结论是,在不同的痘病毒科属中,密码子的用法出奇地不同,但在单个属中保守性更高。因此,痘病毒科可以根据观察到的密码子偏倚分为不同的组。在这种情况下,可以基于密码子偏倚更准确地预测未感染的哺乳动物细胞中转染的痘病毒基因的成功瞬时表达。作为推论,对于密码子使用率较低的特定痘病毒基因,密码子优化可导致未感染哺乳动物细胞系转染后瞬时表达水平显着提高。

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