首页> 美国卫生研究院文献>Journal of Virology >Note: The Major Attenuating Mutations of the Respiratory Syncytial Virus Vaccine Candidate cpts530/1009 Specify Temperature-Sensitive Defects in Transcription and Replication and a Non-Temperature-Sensitive Alteration in mRNA Termination
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Note: The Major Attenuating Mutations of the Respiratory Syncytial Virus Vaccine Candidate cpts530/1009 Specify Temperature-Sensitive Defects in Transcription and Replication and a Non-Temperature-Sensitive Alteration in mRNA Termination

机译:注意:呼吸道合胞病毒候选疫苗cpts530 / 1009的主要衰减突变在转录和复制中指定了温度敏感缺陷在mRNA终止中指定了非温度敏感变化。

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摘要

The live-attenuated respiratory syncytial virus vaccine candidate cpts530/1009 was previously shown to contain two separate amino acid changes in the L protein, mutations 530 and 1009 (Phe-521→Leu and Met-1169→Val, respectively, according to the amino acid sequence of the L protein). Each mutation independently specifies temperature-sensitive (ts) and attenuation phenotypes. In this study, we examined the effects of these mutations on transcription and RNA replication, using complete infectious recombinant virus as well as a plasmid-based minireplicon system, the latter under conditions in which effects on replication and transcription are uncoupled. In comparison with recombinant wild-type virus, the 530 and 1009 viruses were partially restricted at 37°C for RNA replication, mRNA synthesis, and virus growth. The 1009 virus was partially restricted for RNA synthesis and virus growth even at 32°C, which suggested that the 1009 mutation has a non-ts component in addition to the ts component. Interestingly, the synthesis of polycistronic readthrough mRNAs was elevated 1.6- to 3.8-fold for the 1009 virus, and this defect was non-ts. Studies with the minigenome system showed that the 530 and 1009 mutations each directly affect both replication and transcription, that the effect on replication was marginally greater than on transcription for the 530 mutation, and that the increase in readthrough mRNA associated with the 1009 mutation also was observed with the minigenome system.
机译:先前显示,减毒活呼吸道合胞病毒疫苗候选物cpts530 / 1009在L蛋白中含有两个独立的氨基酸变化,即突变530和1009(分别根据Phe-521→Leu和Met-1169→Val L蛋白的酸序列)。每个突变独立地指定对温度敏感的(ts)和衰减表型。在这项研究中,我们检查了这些突变对转录和RNA复制的影响,使用了完整的传染性重组病毒以及基于质粒的微型复制子系统,后者在复制和转录的影响不耦合的条件下。与重组野生型病毒相比,530和1009病毒在37°C时会部分受限于RNA复制,mRNA合成和病毒生长。 1009病毒甚至在32°C时也受到RNA合成和病毒生长的部分限制,这表明1009突变除了ts成分外还具有non-ts成分。有趣的是,对于1009病毒,多顺反子通读mRNA的合成提高了1.6到3.8倍,这种缺陷是非ts的。微型基因组系统的研究表明,530和1009突变均直接影响复制和转录,530突变对复制的影响略大于转录,与1009突变相关的通读mRNA的增加也很明显。用微型基因组系统观察到。

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