...
首页> 外文期刊>Progress in Artificial Intelligence >Genetic manipulation of porcine deltacoronavirus reveals insights into NS6 and NS7 functions: a novel strategy for vaccine design
【24h】

Genetic manipulation of porcine deltacoronavirus reveals insights into NS6 and NS7 functions: a novel strategy for vaccine design

机译:猪Deltacoronavirus的遗传操作揭示了NS6和NS7功能的见解:一种新的疫苗设计策略

获取原文
获取原文并翻译 | 示例
           

摘要

Porcine deltacoronavirus (PDCoV) is an emerging swine coronavirus that causes severe diarrhea, resulting in high mortality in neonatal piglets. Despite widespread outbreaks in many countries, no effective PDCoV vaccines are currently available. Here, we generated, for the first time, a full-length infectious cDNA clone of PDCoV. We further manipulated the infectious clone by replacing the NS6 gene with a green fluorescent protein (GFP) to generate rPDCoV-Delta NS6-GFP; likewise, rPDCoV-Delta NS7 was constructed by removing the ATG start codons of the NS7 gene. Growth kinetics studies suggest that rPDCoV-Delta NS7 could replicate similarly to that of the wild-type PDCoV, whereas rPDCoV-Delta NS6-GFP exhibited a substantial reduction of viral titer in vitro and in vivo. Piglets inoculated with rPDCoV-Delta NS7 or wild-type PDCoV showed similar diarrheic scores and pathological injury. In contrast, rPDCoV-Delta NS6-GFP-infected piglets did not show any clinical signs, indicating that the NS6 protein is an important virulence factor of PDCoV and that the NS6-deficient mutant virus might be a promising live-attenuated vaccine candidate. Taken together, the reverse genetics platform described here not only provides more insights into the role of PDCoV accessory proteins in viral replication and pathogenesis, but also allows the development of novel vaccines against PDCoV infection.
机译:猪Deltacoronavirus(Pdcov)是一种新兴猪冠状病毒,导致严重腹泻,导致新生儿仔猪的死亡率高。尽管许多国家广泛爆发,但目前没有有效的PDCOV疫苗。在这里,我们首次生成了pdcov的全长传染cDNA克隆。我们通过用绿色荧光蛋白(GFP)替代NS6基因来进一步操纵传染性克隆,以产生RPDCOV-DELTA NS6-GFP;同样,通过去除NS7基因的ATG起始密码子来构建RPDCoV-Delta NS7。生长动力学研究表明,RPDCOV-DELTA NS7可以与野生型PDCOV的恢复,而RPDCOV-DERTA NS6-GFP在体外和体内表现出病毒滴度的大幅减少。接种着RPDCOV-DELTA NS7或野生型PDCOV的仔猪显示出类似的腹泻分数和病理损伤。相比之下,RPDCOV-DELTA NS6-GFP感染仔猪未显示任何临床症状,表明NS6蛋白是PDCOV的重要毒力因子,并且NS6缺陷型突变病毒可能是有前途的活化的疫苗候选者。这里描述的反向遗传平台不仅提供了更多的洞察力,还提供了对PDCOV辅助蛋白在病毒复制和发病机制中的作用的洞察力,而且还允许对PDCOV感染的新疫苗的发展进行开发。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号