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鸡腺病毒 4 复制非必需基因的鉴定。

No Genus-Specific Gene Is Essential for the Replication of Fowl Adenovirus 4 in Chicken LMH Cells.

机构信息

College of Marine Science and Biological Engineering, Qingdao University of Science and Technologygrid.412610.0, Qingdao, Shandong, China.

State Key Laboratory of Infectious Disease Prevention and Control, National Institute for Viral Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China.

出版信息

Microbiol Spectr. 2022 Jun 29;10(3):e0047022. doi: 10.1128/spectrum.00470-22. Epub 2022 May 31.

Abstract

Essential genus-specific genes have not been discovered for fowl adenovirus (FAdV), which hampers the development of FAdV-based vectors and attenuated FAdV vaccines. Reverse genetics approaches were employed to construct FAdV-4 mutants carrying deletions or frameshift mutations covering the whole left and right ends of the viral genome. The results of virus rescue and plaque forming experiments illustrated that all the 22 designated ORFs (open reading frames) were dispensable for the replication of FAdV-4 in chicken hepatoma Leghorn male hepatoma (LMH) cells and primary embryo hepatocytes. RNA-seq data demonstrated that ORF28 and ORF29 were not protein-encoding genes, and suggested a promoter (RP1) and an intron in these regions, respectively. The promoter activity of RP1 was further confirmed by reporter gene expression experiments. GAM-1-deleted FAdV-4 formed small plaques, while deletion of GAM-1 together with ORF22 resulted in even smaller ones in LMH cells. Simultaneous deletion of ORF28, ORF29, and GAM-1 led to growth defect of FAdV-4. These facts implied that genus-specific genes contributed to and synergistically affected viral replication, although no single one was essential. Notably, replication of FAdV-4 mutants could be different and . XGAM1-CX19A, a GAM-1-deleted FAdV-4 that replicated efficiently in LMH cells, did not kill chicken embryos because virus propagation took place at a very low level . This work laid a solid foundation for FAdV-4 vector construction as well as vaccine development, and would benefit viral gene function study. Identification of viral essential genes is important for adenoviral vector construction. Deletion of nonessential genes enlarges cloning capacity, deletion of essential genes makes a replication-defective vector, and expression of essential genes in generates a virus packaging cell line. However, the genus-specific essential genes in FAdV have not been identified. We constructed adenoviral plasmid carrying deletions covering all 22 genus-specific ORFs of FAdV-4, and found that all virus mutants could be rescued and amplified in chicken LMH cells except those that had defects in key promoter activity. These genus-specific genes affected virus growth, but no single one was indispensable. Dysfunction of several genus-specific genes at the same time could make FAdV-4 vectors replication-defective. In addition, the growth of FAdV-4 mutants could be different in LMH cells and in chicken embryos, suggesting the possibility of constructing attenuated FAdV-4 vaccines.

摘要

禽腺病毒(FAdV)尚未发现必要的种属特异性基因,这阻碍了基于 FAdV 的载体和减毒 FAdV 疫苗的发展。本研究采用反向遗传学方法构建了携带缺失或移码突变的 FAdV-4 突变体,这些突变覆盖了病毒基因组的整个左、右端。病毒拯救和蚀斑形成实验的结果表明,22 个指定的开放阅读框(ORF)对于 FAdV-4 在鸡肝癌细胞(LMH)和原代鸡胚肝细胞中的复制都是非必需的。RNA-seq 数据表明,ORF28 和 ORF29 不是编码蛋白的基因,分别提示在这些区域存在一个启动子(RP1)和一个内含子。RP1 启动子活性通过报告基因表达实验进一步得到证实。缺失 GAM-1 的 FAdV-4 形成小蚀斑,而缺失 GAM-1 加上 ORF22 则导致 LMH 细胞中的蚀斑更小。同时缺失 ORF28、ORF29 和 GAM-1 导致 FAdV-4 的生长缺陷。这些事实表明,尽管没有一个基因是必需的,但种属特异性基因有助于并协同影响病毒复制。值得注意的是,FAdV-4 突变体的复制能力存在差异。XGAM1-CX19A 是一种高效复制的 GAM-1 缺失型 FAdV-4,它不会杀死鸡胚,因为病毒的繁殖水平非常低。这项工作为 FAdV-4 载体构建以及疫苗开发奠定了坚实的基础,也将有助于病毒基因功能的研究。鉴定腺病毒的必需基因对于腺病毒载体的构建非常重要。缺失非必需基因可以扩大克隆容量,缺失必需基因可以构建复制缺陷型载体,在载体中表达必需基因可以生成病毒包装细胞系。然而,FAdV 中的种属特异性必需基因尚未被鉴定。我们构建了携带覆盖 FAdV-4 全部 22 个种属特异性 ORF 的缺失的腺病毒质粒,并发现除了关键启动子活性缺陷的病毒突变体外,所有病毒突变体都可以在鸡 LMH 细胞中被拯救和扩增。这些种属特异性基因影响病毒的生长,但没有一个是不可或缺的。同时存在几个种属特异性基因的功能障碍可能会使 FAdV-4 载体失去复制能力。此外,FAdV-4 突变体在 LMH 细胞和鸡胚中的生长情况可能不同,这表明构建减毒 FAdV-4 疫苗的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe85/9241798/c79974aac152/spectrum.00470-22-f001.jpg

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