首页> 外文OA文献 >Reverse Genetics for Type I Feline Coronavirus Field Isolate To Study the Molecular Pathogenesis of Feline Infectious Peritonitis
【2h】

Reverse Genetics for Type I Feline Coronavirus Field Isolate To Study the Molecular Pathogenesis of Feline Infectious Peritonitis

机译:I型猫型冠状病毒野外分离物的逆向遗传研究猫培养型腹膜炎的分子发病机制

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。
获取外文期刊封面目录资料

摘要

Feline infectious peritonitis (FIP), one of the most important lethal infections of cats, is caused by feline infectious peritonitis virus (FIPV), the high-virulence biotype of feline coronaviruses (FCoVs). FIPVs are suggested to emerge from feline enteric coronaviruses (FECVs) by acquiring mutations in specific genes in the course of persistent infections. Although numerous studies identified mutations predicted to be responsible for the FECV-FIPV biotype switch, the presumed roles of specific genetic changes in FIP pathogenesis have not been confirmed experimentally. Reverse genetics systems established previously for serotype I and the less common serotype II FCoVs were based on cell culture-adapted FIPV strains which, however, were shown to be unsuitable for FIP pathogenesis studies in vivo. To date, systems to produce and manipulate recombinant serotype I field viruses have not been developed, mainly because these viruses cannot be grown in vitro. Here, we report the first reverse genetics system based on a serotype I FECV field isolate that is suitable to produce high-titer stocks of recombinant FECVs. We demonstrate that these recombinant viruses cause productive persistent infections in cats that are similar to what is observed in natural infections. The system provides an excellent tool for studying FCoVs that do not grow in standard cell culture systems and will greatly facilitate studies into the molecular pathogenesis of FIP. Importantly, the system could also be adapted for studies of other RNA viruses with large genomes whose production and characterization in vivo are currently hampered by the lack of in vitro propagation systems.The availability of recombinant serotype I FCoV field isolates that are amenable to genetic manipulation is key to studying the molecular pathogenesis of FIP, especially since previous studies using cell culture-adapted FIPVs had proven unsuccessful. To our knowledge, we report the first serotype I FECV field isolate-based reverse genetics system that allows the production of high-titer recombinant virus stocks that can be used for subsequent in vivo studies in cats. The system represents a milestone in FCoV research. It provides an essential tool for studying the molecular pathogenesis of FIP and, more specifically, the functions of specific gene products in causing a fundamentally different progression of disease following acquisition of specific mutations. The system developed in this study will also be useful for studying other coronaviruses or more distantly related RNA viruses with large genomes for which suitable in vitro culture systems are not available.
机译:猫类传染性腹膜炎(FIP)是猫类最重要的致死感染之一,是由猫传染性腹膜炎病毒(FIPV)引起的,猫冠状病毒(FCOV)的高毒力生物型。建议通过在持续感染过程中获取特定基因的突变来从猫肠冠状病毒(FECV)中出现FIPV。尽管鉴定了许多研究预测对FECV-FIPV生物型开关负责的突变,但是在实验上尚未确认特异性遗传发生器变化的假定作用。以前用于血清型I和较少常见的血清型II FCOV的逆向遗传系统基于细胞培养适应的FIPV菌株,然而显示出不适合体内FIP发病性研究。迄今为止,尚未开发生产和操作重组血清型I现场病毒的系统,主要是因为这些病毒不能在体外生长。在这里,我们报告了基于血清型I FECV野外分离物的第一逆遗传系统,适合于产生重组FECV的高滴度股。我们证明,这些重组病毒导致猫的生产持续感染类似于在自然感染中观察到的猫。该系统提供了一种优异的工具,用于研究不在标准细胞培养系统中生长的FCOV,并将极大地促进研究FIP的分子发病机制。重要的是,该系统还可以适用于具有大型基因组的其他RNA病毒的研究,其在体外繁殖系统中目前阻碍了体内的产生和表征。重组血清型I FCOV田间分离物的可用性,可致遗传操作研究了FIP分子发病机制的关键,特别是因为使用细胞培养适应的FIPVS先前的研究已经证明不成功。为了我们的知识,我们报告了第一种基于FECV野外孤立的逆向遗传系统,其允许生产高滴度重组病毒库存,其可用于猫的体内研究。该系统代表FCOV研究中的一个里程碑。它提供了研究FIP的分子发病机制的重要工具,更具体地,特异性基因产物的功能在获取特定突变后引起疾病的根本性不同进展。本研究开发的系统也将有助于研究其他冠状病毒或更远距离相关的RNA病毒,其具有大型基因组,其适用于哪种体外培养系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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