State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing, P. R. China.
Key Laboratory for Sericulture Functional Genomics and Biotechnology of Agricultural Ministry, Southwest University, Chongqing, P. R. China.
PLoS One. 2018 Feb 15;13(2):e0193065. doi: 10.1371/journal.pone.0193065. eCollection 2018.
Nosema bombycis is a destructive, obligate intracellular parasite of the Bombyx mori. In this study, a single-chain variable fragment (scFv) dependent technology is developed for the purpose of inhibiting parasite proliferation in insect cells. The scFv-G4, which we prepared from a mouse G4 monoclonal antibody, can target the N. bombycis spore wall protein 12 (NbSWP12). Indirect immunofluorescence assays showed that NbSWP12 located mainly on the outside of the N. bombycis cytoskeleton, although some of it co-localized with β-tubulin in the meront-stage of parasites. When meront division began, NbSWP12 became concentrated at both ends of each meront. Western blotting showed that scFv-G4 could express in Sf9-III cells and recognized native NbSWP12. The transgenic Sf9-III cell line showed better resistance than the controls when challenged with N. bombycis, indicating that NbSWP12 is a promising target in this parasite and this scFv dependent strategy could be a solution for construction of N. bombycis-resistant Bombyx mori.
微孢子虫是家蚕的一种破坏性、专性细胞内寄生虫。在这项研究中,我们开发了一种单链可变片段 (scFv) 依赖技术,旨在抑制昆虫细胞中的寄生虫增殖。我们从一种小鼠 G4 单克隆抗体中制备的 scFv-G4 可以靶向微孢子虫孢子壁蛋白 12 (NbSWP12)。间接免疫荧光分析表明,NbSWP12 主要位于微孢子虫细胞骨架的外部,尽管其中一些与β-微管蛋白在寄生虫的原质团期共定位。当原质团开始分裂时,NbSWP12 集中在每个原质团的两端。Western blot 分析表明,scFv-G4 可以在 Sf9-III 细胞中表达并识别天然的 NbSWP12。与对照相比,转 scFv-G4 的 Sf9-III 细胞系在受到微孢子虫侵袭时表现出更好的抗性,表明 NbSWP12 是该寄生虫的一个有前途的靶标,这种 scFv 依赖的策略可能是构建抗微孢子虫家蚕的一种解决方案。