Gross C H, Russell R L, Rohrmann G F
Department of Agricultural Chemistry, Agricultural & Life Sciences 1007, Oregon State University, Corvallis 97331-7301.
J Gen Virol. 1994 May;75 ( Pt 5):1115-23. doi: 10.1099/0022-1317-75-5-1115.
To investigate the regulation of p10 and polyhedron envelope protein (PEP) gene expression and their role in polyhedron development, Orgyia pseudotsugata multinucleocapsid nuclear polyhedrosis viruses lacking these genes were constructed. Recombinant viruses were produced, in which the p10 gene, the PEP gene or both genes were disrupted with the beta-glucuronidase (GUS) or beta-galactosidase (lacZ) genes. GUS activity under the control of the PEP protein promoter was observed later in infection and its maximal expression was less than 10% the level for p10 promoter-GUS constructs. Tissues from O. pseudotsugata larvae infected with these recombinants were examined by electron microscopy. Cells from insects infected with the p10- viruses lacked p10-associated fibrillar structures, but fragments of polyhedron envelope-like structures were observed on the surface of some polyhedra. Immunogold labelling of cells infected with the p10-GUS+ virus with an antibody directed against PEP showed that the PEP was concentrated at the surface of polyhedra. Although polyhedra produced by p10 and PEP gene deletion mutants demonstrated what appeared to be a polyhedron envelope by transmission electron microscopy, scanning electron microscopy showed that they had irregular, pitted surfaces that were different from wild-type polyhedra. These data suggested that both p10 and PEP are important for the proper formation of the periphery of polyhedra.
为了研究p10和多面体包膜蛋白(PEP)基因表达的调控及其在多面体发育中的作用,构建了缺失这些基因的云杉芽卷叶蛾多核衣壳核型多角体病毒。产生了重组病毒,其中p10基因、PEP基因或这两个基因都被β-葡萄糖醛酸酶(GUS)或β-半乳糖苷酶(lacZ)基因破坏。在感染后期观察到PEP蛋白启动子控制下的GUS活性,其最大表达量不到p10启动子-GUS构建体水平的10%。用电子显微镜检查感染这些重组体的云杉芽卷叶蛾幼虫的组织。感染p10-病毒的昆虫细胞缺乏与p10相关的纤维状结构,但在一些多面体表面观察到多面体包膜样结构的片段。用针对PEP的抗体对感染p10-GUS+病毒的细胞进行免疫金标记显示,PEP集中在多面体表面。尽管通过透射电子显微镜观察,p10和PEP基因缺失突变体产生的多面体显示出似乎是多面体包膜的结构,但扫描电子显微镜显示它们具有不规则的、有凹坑的表面,这与野生型多面体不同。这些数据表明,p10和PEP对多面体周边的正确形成都很重要。