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在感染苜蓿银纹夜蛾核多角体病毒(AcMNPV)的草地贪夜蛾幼虫多面体包膜组装的进展阶段中,p10和萼蛋白的一条共同途径。

A common pathway for p10 and calyx proteins in progressive stages of polyhedron envelope assembly in AcMNPV-infected Spodoptera frugiperda larvae.

作者信息

Lee S Y, Poloumienko A, Belfry S, Qu X, Chen W, MacAfee N, Morin B, Lucarotti C, Krause M

机构信息

Department of Biology, University of New Brunswick, Canada.

出版信息

Arch Virol. 1996;141(7):1247-58. doi: 10.1007/BF01718828.

Abstract

The assembly of the polyhedron envelope in baculovirus-infected cells has been the subject of several studies, yet it is still poorly understood. We have used immunogold-labelled antibodies to two baculovirus proteins, p10 and calyx (also referred to as polyhedron envelope protein or PEP), to follow envelope assembly in AcMNPV-infected tissues of Spodoptera frugiperda larvae. We show that, in wild type virus, both proteins colocalize in fibrillar structures and associated electron-dense spacers which progress to encircle the polyhedra, as well as in completed polyhedron envelopes. In cells infected with polyhedrin-negative (PH-) viruses, an unusual proliferation of these spacers was observed suggesting a deregulatory event in the envelope assembly process. Results of Northern and Western blot analysis revealed that synthesis of P10 and calyx mRNA and proteins in PH- AcMNPV is unaffected as compared to wild type virus. Taken together, the observed physical and compositional connection between fibrillar structures, spacers and polyhedron envelopes, as well as the abnormal appearance of the spacers in PH- mutants, provide further evidence in support of a cooperative role of these structures in the assembly of the polyhedron envelope.

摘要

杆状病毒感染细胞中多面体包膜的组装一直是多项研究的主题,但仍未被充分理解。我们使用针对杆状病毒的两种蛋白质p10和萼片(也称为多面体包膜蛋白或PEP)的免疫金标记抗体,追踪草地贪夜蛾幼虫受苜蓿银纹夜蛾核型多角体病毒(AcMNPV)感染组织中的包膜组装过程。我们发现,在野生型病毒中,这两种蛋白质共定位于纤维状结构以及相关的电子致密间隔物中,这些间隔物逐渐环绕多面体,并且也存在于完整的多面体包膜中。在感染了多角体蛋白阴性(PH-)病毒的细胞中,观察到这些间隔物异常增殖,这表明包膜组装过程中发生了调控失调事件。Northern印迹和Western印迹分析结果显示,与野生型病毒相比,PH- AcMNPV中P10和萼片mRNA及蛋白质的合成未受影响。综上所述,观察到的纤维状结构、间隔物和多面体包膜之间的物理和组成联系,以及PH-突变体中间隔物的异常外观,为这些结构在多面体包膜组装中的协同作用提供了进一步的证据。

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