Laboratory of Molecular Plant Protection, All-Russian Institute of Plant Protection, St. Petersburg, Pushkin, Russia.
Laboratory of Molecular Plant Protection, All-Russian Institute of Plant Protection, St. Petersburg, Pushkin, Russia.
J Invertebr Pathol. 2022 Jun;191:107755. doi: 10.1016/j.jip.2022.107755. Epub 2022 Apr 9.
Secretion of hexokinase (HK) by microsporidia into infected cells suggests an important role for this enzyme for the intracellular development of parasites. To verify whether the expression of HK-specific antibodies in the host cell cytoplasm can suppress the growth of microsporidia, we constructed an immune library of recombinant scFv fragments against the enzyme of the honey bee pathogen Vairimorpha (Nosema) ceranae (VcHK) with a representativeness of about 5 million bacterial transformants. Two variants of VcHK-specific recombinant antibodies were selected by library panning and expressed in lepidopteran Sf9 cell line. Infecting of cells expressing two selected and control scFv fragments with V. ceranae spores was followed by their cultivation for 4 days. Analysis of parasite β-tubulin as well as spore wall protein SWP32 transcripts in infected cultures by reverse transcription PCR and real-time qPCR showed (1) V. ceranae growth in cells heterologous to bee pathogens, (2) its inhibition by one of the selected VcHK-specific recombinant antibodies. The latter result once again emphasizes an important role of microsporidia hexokinases in their relationships with infected host cells and suggests further focusing on the mechanisms of such suppression, as well as on the search for new V. ceranae - inhibiting scFv fragments.
微孢子虫将己糖激酶(HK)分泌到感染细胞中,这表明该酶对于寄生虫的细胞内发育具有重要作用。为了验证宿主细胞质中 HK 特异性抗体的表达是否能抑制微孢子虫的生长,我们构建了一个针对蜜蜂病原体瓦螨(Nosema)ceranae(VcHK)酶的重组 scFv 片段免疫文库,该文库的代表性约为 500 万个细菌转化体。通过文库淘选,选择了两种 VcHK 特异性重组抗体的变体,并在鳞翅目 Sf9 细胞系中表达。用 V. ceranae 孢子感染表达两种选定的和对照 scFv 片段的细胞,然后培养 4 天。通过反转录 PCR 和实时 qPCR 分析感染培养物中的寄生虫β-微管蛋白和孢子壁蛋白 SWP32 的转录本,结果显示:(1)V. ceranae 在与蜜蜂病原体不同源的细胞中生长;(2)其中一种选定的 VcHK 特异性重组抗体抑制了其生长。这一结果再次强调了微孢子虫己糖激酶在与感染宿主细胞的关系中的重要作用,并提示进一步关注这种抑制的机制,以及寻找新的抑制 V. ceranae 的 scFv 片段。