Yang Xian-Feng, Peng Jiao-Jiao, Liang Hong-Ru, Yang You-Tian, Wang Yi-Fei, Wu Xiao-Wei, Pan Jiao-Jiao, Luo Yong-Wen, Guo Xiao-Feng
College of Veterinary Medicine, South China Agricultural University, Guangzhou, 510642 China.
Key Laboratory of Fishery Drug Development of Ministry of Agriculture, Pearl River Fishery Research Institute, Chinese Academy of Fishery Sciences, Liwan District, Guangzhou, 510000 China.
Virusdisease. 2014;25(3):365-71. doi: 10.1007/s13337-014-0220-1. Epub 2014 Jun 7.
The matrix protein (M) is one of only five genes in the RV genome and is an important multifunctional protein. Besides to allow for the release of newly replicated virions pairing with G, the M protein also functions in virus replication, pathogenicity, and host cell apoptosis. The goal of present study is to generate recombinant viruses with M gene rearranged, thus laying the foundation for further exploring what will happen when the gene for M is relocated on the RV single-strand RNA. We used rHEP-Flury, an attenuated virus that remains virulent for less than 3 days in sucking mice, to reshuffle the M gene, using an approach that leaves the other viral nucleotide sequence intact. Two viruses with translocated M genes (N1M2 and N1M4) were recovered from each of the rearranged cDNAs, whose gene order is 3'-N-M-P-G-L-5' and 3'-N-P-G-M-L-5' respectively. The growth dynamics of these viruses showed slower replication than the wild-type virus in multiple-step growth curves, but they can grow to a comparable titer in tests of single-step growth curves. Further experimentation with these rearranged viruses will provide insights into the relationships between genome structure and virus phenotypes.
基质蛋白(M)是呼肠孤病毒(RV)基因组中仅有的五个基因之一,是一种重要的多功能蛋白。除了与G蛋白配对以促进新复制的病毒粒子释放外,M蛋白还在病毒复制、致病性和宿主细胞凋亡中发挥作用。本研究的目的是构建M基因重排的重组病毒,从而为进一步探索当M基因在RV单链RNA上重新定位时会发生什么奠定基础。我们使用rHEP-Flury(一种在乳鼠中致病力持续不到3天的减毒病毒),采用一种使其他病毒核苷酸序列保持完整的方法来重排M基因。从每个重排的cDNA中获得了两种M基因易位的病毒(N1M2和N1M4),其基因顺序分别为3'-N-M-P-G-L-5'和3'-N-P-G-M-L-5'。这些病毒的生长动力学在多步生长曲线中显示出比野生型病毒更慢的复制速度,但在单步生长曲线测试中它们可以生长到相当的滴度。对这些重排病毒的进一步实验将为深入了解基因组结构与病毒表型之间的关系提供线索。