Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212018, China.
Key Laboratory of Genetic Improvement of Sericulture in the Ministry of Agriculture, Sericultural Research Institute, Chinese Academy of Agricultural Science, Zhenjiang 212018, China.
Viruses. 2019 Nov 15;11(11):1067. doi: 10.3390/v11111067.
Ebola virus (EBOV) disease outbreaks have resulted in many fatalities, yet no licensed vaccines are available to prevent infection. Recombinant glycoprotein (GP) production may contribute to finding a cure for Ebola virus disease, which is the key candidate protein for vaccine preparation. To explore GP expression in BmN cells, EBOV-GP with its native signal peptide or the GP64 signal peptide was cloned and transferred into a normal or gp64 null Bombyx mori nucleopolyhedrovirus (BmNPV) bacmid via transposition. The infectivity of the recombinant bacmids was investigated after transfection, expression and localization of EBOV-GP were investigated, and cell morphological changes were analyzed by TEM. The GP64 signal peptide, but not the GP native signal peptide, caused GP localization to the cell membrane, and the differentially localized GP proteins were cleaved into GP and GP fragments in BmN cells. GP expression resulted in dramatic morphological changes in BmN cells in the early stage of infection. However, GP expression did not rescue GP64 deficiency in BmNPV infection. This study provides a better understanding of GP expression and processing in BmN cells, which may lay a foundation for EBOV-GP expression using the BmNPV baculovirus expression system.
埃博拉病毒(EBOV)病爆发导致了许多人死亡,但目前尚无可用的疫苗来预防感染。重组糖蛋白(GP)的生产可能有助于找到治疗埃博拉病毒病的方法,它是疫苗制备的关键候选蛋白。为了探索 BmN 细胞中的 GP 表达,将具有天然信号肽或 GP64 信号肽的 EBOV-GP 克隆并通过转座转移到正常或 gp64 缺失的家蚕核型多角体病毒(BmNPV)杆状病毒中。转染后研究了重组杆状病毒的感染性,研究了 EBOV-GP 的表达和定位,并通过 TEM 分析了细胞形态变化。GP64 信号肽而不是 GP 天然信号肽导致 GP 定位于细胞膜,并且差异定位的 GP 蛋白在 BmN 细胞中被切割成 GP 和 GP 片段。GP 表达导致感染早期 BmN 细胞的形态发生剧烈变化。然而,GP 表达并不能挽救 BmNPV 感染中 GP64 的缺乏。本研究更好地了解了 GP 在 BmN 细胞中的表达和加工,这可能为使用 BmNPV 杆状病毒表达系统表达 EBOV-GP 奠定基础。