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携带来自 MabrNPV 的 PIF1、2 和 3 的 HearNPV 假型化:感染性和复合物稳定性。

HearNPV Pseudotyped with PIF1, 2, and 3 from MabrNPV: Infectivity and Complex Stability.

机构信息

State Key Laboratory of Virology, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, 430071, China.

Jomo Kenyatta University of Agriculture and Technology, P.O. Box 62000-00200, Nairobi, Kenya.

出版信息

Virol Sin. 2018 Apr;33(2):187-196. doi: 10.1007/s12250-018-0014-5. Epub 2018 Mar 16.

Abstract

Effective oral infection is set off by interaction of a group of conserved per os infectivity factors (PIFs) with larval midgut columnar epithelial cells. We constructed pseudotyped viruses by substituting pif1, pif2 or pif3 genes of Helicoverpa armigera nucleopolyhedrovirus (HearNPV) with their homologs from Mamestra bracissae multiple nucleopolyhedrovirus and tested their infectivity to tissue culture cells and to larvae. Transfection and infection assays revealed that all recombinant viruses generated infectious budded virus in both cell culture and in larvae. Electron microscopy showed synthesized occlusion body and occlusion derived virus (ODV) were morphologically indistinguishable from those of the parental virus. By contrast, feeding assays revealed that pseudotyped viruses could not rescue oral infectivity except for pif3 pseudotyped virus that only partially rescued oral infectivity but at a mortality rate much lower than that of the parental HearNPV. Consistent with the bioassay result, PIF complex was detected in ODVs of pif3 pseudotyped virus only but not in pif1 or pif2 pseudotyped viruses. Our results suggest that PIF complex is essential for oral infectivity, and in the formation of the PIF complex, PIF1, 2 are virus-specific while PIF3 does not appear to be as specific and can function in heterologous environment, albeit to a much more limited extent.

摘要

有效的口服感染是由一组保守的经口感染因子(PIFs)与幼虫中肠柱状上皮细胞相互作用引发的。我们通过用来自大造桥虫多核型多角体病毒(Mamestra bracissae multiple nucleopolyhedrovirus)的同源物替代棉铃虫核多角体病毒(Helicoverpa armigera nucleopolyhedrovirus)的 pif1、pif2 或 pif3 基因,构建了假型病毒,并测试了它们对组织培养细胞和幼虫的感染性。转染和感染实验表明,所有重组病毒在细胞培养和幼虫中都产生了有感染力的芽生病毒。电子显微镜显示合成的包埋体和包埋衍生病毒(ODV)在形态上与亲本病毒没有区别。相比之下,喂食实验表明,除了 pif3 假型病毒可以部分挽救口服感染性外,假型病毒不能挽救口服感染性,但死亡率远低于亲本 HearNPV。与生物测定结果一致,只有在 pif3 假型病毒的 ODV 中检测到 PIF 复合物,而在 pif1 或 pif2 假型病毒中未检测到。我们的结果表明,PIF 复合物对于口服感染性是必需的,并且在 PIF 复合物的形成中,PIF1、2 是病毒特异性的,而 PIF3 似乎不那么特异性,并且可以在异源环境中发挥作用,尽管作用范围要小得多。

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The Host Specificities of Baculovirus per os Infectivity Factors.杆状病毒经口感染因子的宿主特异性
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本文引用的文献

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Construction and Rescue of a Functional Synthetic Baculovirus.功能性合成杆状病毒的构建与拯救
ACS Synth Biol. 2017 Jul 21;6(7):1393-1402. doi: 10.1021/acssynbio.7b00028. Epub 2017 Apr 6.
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The Host Specificities of Baculovirus per os Infectivity Factors.杆状病毒经口感染因子的宿主特异性
PLoS One. 2016 Jul 25;11(7):e0159862. doi: 10.1371/journal.pone.0159862. eCollection 2016.

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