Molouki Aidin, Peeters Ben
Department of Avian Disease Research and Diagnostic, Razi Vaccine and Serum Research Institute, Agricultural Research Education and Extension Organization (AREEO), Karaj, Iran.
Department of Virology, Wageningen Bioveterinary Research, PO Box 65, 8200 AB, Lelystad, The Netherlands.
Arch Virol. 2017 Jul;162(7):1845-1854. doi: 10.1007/s00705-017-3308-2. Epub 2017 Mar 18.
Reverse genetics of viruses has come a long way, and many recombinant viruses have been generated since the first successful "rescues" were reported in the late 1970s. Recombinant Newcastle disease virus (rNDV), a non-segmented negative-sense RNA virus (NSNSV), was first rescued in 1999 using a reverse genetics approach similar to that reported for other recombinant viruses of the order Mononegavirales a few years before. The route from an original NDV isolate to the generation of its recombinant counterpart requires many steps that have to be sequentially and carefully completed. Background knowledge of each of these steps is essential because it allows one to make the best choices for fulfilling the specific requirements of the final recombinant virus. We have previously reviewed the latest strategies in cloning the NDV full-length cDNA into transcription vectors and the use of different RNA polymerase systems for the generation of viral RNA from plasmid DNA. In this article, we review a number of discoveries on the mechanism of transcription and replication of NDV, including a brief history behind the discovery of its RNP complex. This includes the generation of artificial and functional RNP constructs, in combination with the smart use of available knowledge and technologies that ultimately resulted in rescue of the first rNDV.
病毒的反向遗传学已经取得了长足的进展,自20世纪70年代末首次报道成功“拯救”病毒以来,已经产生了许多重组病毒。重组新城疫病毒(rNDV)是一种不分节段的负链RNA病毒(NSNSV),1999年首次通过类似于几年前报道的其他单股负链RNA病毒目重组病毒的反向遗传学方法拯救出来。从原始的新城疫病毒分离株到其重组对应物的产生过程需要许多步骤,必须依次并仔细地完成。了解这些步骤中的每一步的背景知识至关重要,因为这能让人做出最佳选择,以满足最终重组病毒的特定要求。我们之前已经综述了将新城疫病毒全长cDNA克隆到转录载体中的最新策略,以及使用不同RNA聚合酶系统从质粒DNA产生病毒RNA的方法。在本文中,我们综述了关于新城疫病毒转录和复制机制的一些发现,包括其核糖核蛋白复合体(RNP)发现背后的简要历史。这包括人工功能性RNP构建体的产生,以及结合对现有知识和技术的巧妙运用,最终促成了首例重组新城疫病毒的拯救。