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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Genetic manipulation of two fowlpox virus late transcriptional regulatory elements influences their ability to direct expression of foreign genes.
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Genetic manipulation of two fowlpox virus late transcriptional regulatory elements influences their ability to direct expression of foreign genes.

机译:两个鸡痘病毒后期转录调控元件的遗传操纵影响它们指导外源基因表达的能力。

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Fowlpox virus (FWPV) is currently used as a vector to express foreign genes of various poultry and mammalian pathogens. However, due to limited information available about the primary structure of FWPV promoters required for an optimal transcriptional efficiency, the full potential of FWPV as an expression vector has not been completely realized. To dissect such transcriptional regulatory elements at the molecular level, we selected two FWPV promoters dictating contrasting levels of expression of acidic-type inclusion body protein gene (P190) and A15L vaccinia virus homolog of FWPV (P180) for site-directed mutagenesis studies. The transcriptional activity of mutated promoters was analyzed based on their ability to transcribe a reporter gene, lacZ, and translation of the resultant mRNA into functional protein. Replacement of the spacer sequences of P180 with those of P190 resulted in a five-fold increase in mRNA and a 17.6-fold increase in protein over those with its parental promoter, P180. Similarly, replacement of a thymidine after the start codon with guanosine resulted in a 2.3-fold increase in lacZ mRNA and a seven-fold increase in protein. Combining these substitutions in P180SG produced a maximum increase in mRNA and protein of 6.7- and 29.9-fold, respectively, over concentrations with its parental P180 promoter. The promoter activity of P180SG was comparable to that of the strongest natural promoter, P190. The amount of protein per transcript generated by the mutated promoters of P180 increased to at least three times that with the parental P180. In contrast, similar replacements in P190 resulted in a 40-50% reduction in mRNA and protein in all the mutated promoters. We discuss the significance of spacer sequence and the purine after the start codon in the context of a high level of expression.
机译:禽痘病毒(FWPV)目前被用作表达各种家禽和哺乳动物病原体的外源基因的载体。但是,由于可获得最佳转录效率所需的有关FWPV启动子一级结构的有限信息,因此尚未完全实现FWPV作为表达载体的全部潜力。为了在分子水平上剖析这种转录调控元件,我们选择了两个FWPV启动子来指示酸性型包涵体蛋白基因(P190)和F15的A15L牛痘病毒同源物(P180)的表达水平的差异,以进行定点诱变研究。根据突变启动子转录报告基因lacZ以及将产生的mRNA转化为功能蛋白的能力,分析其转录活性。用P190的间隔序列替换P180的间隔序列导致其亲本启动子P180的mRNA增长5倍,蛋白质增长17.6倍。类似地,在起始密码子后用鸟苷替换胸苷导致lacZ mRNA增加2.3倍,蛋白质增加7倍。与其亲本P180启动子的浓度相比,将P180SG中的这些取代结合起来分别使mRNA和蛋白质的最大增加分别为6.7和29.9倍。 P180SG的启动子活性与最强的天然启动子P190相当。 P180突变的启动子产生的每个转录本的蛋白质量至少增加到亲本P180的三倍。相比之下,P190中类似的替换导致所有突变的启动子中mRNA和蛋白质减少40-50%。我们讨论了在高表达水平下起始密码子后间隔区序列和嘌呤的重要性。

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