Meehan B M, Todd D, Creelan J L, Earle J A, Hoey E M, McNulty M S
Veterinary Sciences Division, Department of Agriculture for Northern Ireland, Belfast, U.K.
Arch Virol. 1992;124(3-4):301-19. doi: 10.1007/BF01309811.
The viral DNAs induced by the unclassified animal virus, chicken anaemia agent (CAA), during replication in MDCC-MSB 1 cells have been investigated. Analyses after S1 nuclease, restriction endonuclease and denaturation treatments indicated that infected cell extracts contained genome-size, single-stranded DNA (M(r) 2.3 kb), closed and open circular, double-stranded replicative form (RF) DNAs (M(r) 2.3 kbp) and a population of smaller double-stranded DNAs (M(r) 0.8 kbp). Recombinant plasmids containing 2.3 kbp CAA RF fragments cloned at the PstI, BamHI and EcoRI sites failed to transfect MDCC-MSB 1 cells. However, one plasmid, which contained two 2.3 kbp CAA RF fragments ligated in tandem at the PstI site, and cloned 2.3 kbp PstI, BamHI and EcoRI fragments, excised from their respective plasmids by restriction endonuclease digestion, were capable of transfection. The nucleotide sequence of the circular genome (2298 bp) of the Cux-1 isolate of CAA has indicated the presence of three overlapping open reading frames (ORFs) of 52 kDa, 24 kDa and 13 kDa on one strand. The existence of these ORFs was corroborated by analyses of partial sequences from three other isolates. The non-coding region of the CAA genome contained sequences with putative regulatory function. These results are discussed in relation to the "rolling circle" model of DNA replication.
对未分类动物病毒——鸡贫血因子(CAA)在MDCC - MSB 1细胞中复制过程中诱导产生的病毒DNA进行了研究。经S1核酸酶、限制性内切酶和变性处理后的分析表明,感染细胞提取物中含有基因组大小的单链DNA(分子量2.3 kb)、闭环和开环双链复制型(RF)DNA(分子量2.3 kbp)以及一群较小的双链DNA(分子量0.8 kbp)。含有在PstI、BamHI和EcoRI位点克隆的2.3 kbp CAA RF片段的重组质粒未能转染MDCC - MSB 1细胞。然而,一个质粒,其在PstI位点串联连接了两个2.3 kbp CAA RF片段,以及通过限制性内切酶消化从各自质粒中切下并克隆的2.3 kbp PstI、BamHI和EcoRI片段,能够进行转染。CAA的Cux - 1分离株环状基因组(2298 bp)的核苷酸序列表明,在一条链上存在三个重叠的开放阅读框(ORF),分别为52 kDa、24 kDa和13 kDa。其他三个分离株的部分序列分析证实了这些ORF的存在。CAA基因组的非编码区包含具有假定调控功能的序列。结合DNA复制的“滚环”模型对这些结果进行了讨论。