de Haan Cornelis A M, Volders Haukeline, Koetzner Cheri A, Masters Paul S, Rottier Peter J M
Virology Division, Department of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, and Institute of Biomembranes, Utrecht University, Yalelaan 1, 3584 CL Utrecht, The Netherlands.
J Virol. 2002 Dec;76(24):12491-502. doi: 10.1128/jvi.76.24.12491-12502.2002.
Despite their high frequency of RNA recombination, the plus-strand coronaviruses have a characteristic, strictly conserved genome organization with the essential genes occurring in the order 5'-polymerase (pol)-S-E-M-N-3'. We have investigated the significance of this remarkable conservation by rearrangement of the murine coronavirus genome through targeted recombination. Thus, viruses were prepared with the following gene order: 5'-pol-S-M-E-N-3', 5'-pol-S-N-E-M-3', 5'-pol-M-S-E-N-3', and 5'-pol-E-M-S-N-3'. All of these viruses were surprisingly viable, and most viruses replicated in cell culture with growth characteristics similar to those of the parental virus. The recombinant virus with the gene order 5'-pol-E-M-S-N-3' was also tested for the ability to replicate in the natural host, the mouse. The results indicate that the canonical coronavirus genome organization is not essential for replication in vitro and in vivo. Deliberate rearrangement of the viral genes may be useful in the generation of attenuated coronaviruses, which due to their reduced risk of generating viable viruses by recombination with circulating field viruses, would make safer vaccines.
尽管正链冠状病毒的RNA重组频率很高,但其具有一种特征性的、严格保守的基因组结构,必需基因按5'-聚合酶(pol)-S-E-M-N-3'的顺序排列。我们通过靶向重组对鼠冠状病毒基因组进行重排,研究了这种显著保守性的意义。因此,制备了具有以下基因顺序的病毒:5'-pol-S-M-E-N-3'、5'-pol-S-N-E-M-3'、5'-pol-M-S-E-N-3'和5'-pol-E-M-S-N-3'。所有这些病毒都出人意料地具有生存能力,并且大多数病毒在细胞培养中复制,其生长特性与亲本病毒相似。还测试了基因顺序为5'-pol-E-M-S-N-3'的重组病毒在天然宿主小鼠中复制的能力。结果表明,典型的冠状病毒基因组结构对于体外和体内复制并非必不可少。病毒基因的有意重排在减毒冠状病毒的产生中可能有用,由于其与循环野病毒重组产生活病毒的风险降低,将成为更安全的疫苗。