Key Laboratory of Zoonoses Research, Ministry of Education, College of Veterinary Medicine, Jilin University, Changchun, People's Republic of China.
College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, People's Republic of China.
J Virol. 2020 Dec 22;95(2). doi: 10.1128/JVI.01513-20.
Many new astroviruses have been identified in humans and other animals in recent years, but only a few have been successfully isolated for extensive biological study. Here, we report an unusual isolation of a porcine astrovirus 5 (PAstV5) strain from a clinical classical swine fever virus (CSFV)-infected tissue sample. Incubation of porcine PK-15 cells with an extract of the CSFV-positive tissue resulted in unexpected cytopathic effects (CPEs), and high-throughput viromic sequencing identified PAstV5 and porcine circovirus type 2 (PCV2) as well as CSFV in the culture. After clearance of CSFV and PCV2, a pure PAstV5 strain, named PAstV5-AH29-2014, was obtained. Analysis revealed virus of typical astroviral morphology with a genome of 6,448 nucleotides, sharing 84.3 to 88.9% nucleotide identity with previously published PAstV5 strains. A mechanistic study showed that CSFV coinfection was likely an important factor for successful isolation by significantly enhancing PAstV5 replication in PK-15 cells via suppression of a type I interferon response. Altogether, PAstV5-AH29-2014, as the first isolated PAstV5 strain, will provide critical material for the investigation of the biological and pathogenic properties of this virus as well as for future development of relevant biological and diagnostic reagents. Porcine astroviruses are mainly associated with gastroenteritis and neurological diseases in pigs, and five genotypes have been identified (PAstV1-5). However, the clinical manifestations of genotypes other than PAstV1 have not yet been determined because of the failure of virus isolation. Here, we report a surprising isolation of a PAstV5 strain from a clinical classical swine fever virus (CSFV)-infected tissue sample, which can stably passage in PK-15 cells, and coinfection with CSFV significantly enhanced the replication of PAstV5, possibly through suppression of beta interferon production. Thus, the first isolated PAstV5 strain will be useful for investigating the biological and pathogenic properties of this virus, and the findings obtained in this study provide new insights into defining the interaction mechanism between CSFV and PAstV5.
近年来,人们在人类和其他动物中发现了许多新的星状病毒,但只有少数成功地被分离出来进行广泛的生物学研究。在这里,我们报告了一种从临床猪瘟病毒(CSFV)感染组织样本中分离出的猪星状病毒 5(PAstV5)株的不寻常分离。用 CSFV 阳性组织的提取物孵育猪 PK-15 细胞导致了意外的细胞病变效应(CPE),高通量病毒组学测序鉴定出 PAstV5 和猪圆环病毒 2 型(PCV2)以及 CSFV 在培养物中。清除 CSFV 和 PCV2 后,获得了一种纯的 PAstV5 株,命名为 PAstV5-AH29-2014。分析表明,该病毒具有典型的星状病毒形态,基因组为 6448 个核苷酸,与先前发表的 PAstV5 株的核苷酸同一性为 84.3%至 88.9%。一项机制研究表明,CSFV 共感染可能是通过抑制 I 型干扰素反应显著增强 PK-15 细胞中 PAstV5 复制从而成功分离的重要因素。总之,PAstV5-AH29-2014 作为第一个分离的 PAstV5 株,将为研究该病毒的生物学和致病性特性以及未来相关生物和诊断试剂的开发提供重要材料。猪星状病毒主要与猪的胃肠炎和神经系统疾病有关,已鉴定出 5 种基因型(PAstV1-5)。然而,由于病毒分离失败,尚未确定除 PAstV1 以外的基因型的临床表现。在这里,我们报告了一种令人惊讶的从临床猪瘟病毒(CSFV)感染组织样本中分离出的 PAstV5 株的分离,该病毒可在 PK-15 细胞中稳定传代,CSFV 共感染显著增强了 PAstV5 的复制,可能是通过抑制β干扰素的产生。因此,第一个分离的 PAstV5 株将有助于研究该病毒的生物学和致病性特性,本研究的结果为定义 CSFV 和 PAstV5 之间的相互作用机制提供了新的见解。