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毕赤酵母异源表达豌豆种白蛋白 PA1 蛋白及其融合雪片莲凝集素 Galanthus nivalis agglutinin; GNA) 以增强杀虫活性的蛋白质工程。

Heterologous production of the insecticidal pea seed albumin PA1 protein by Pichia pastoris and protein engineering to potentiate aphicidal activity via fusion to snowdrop lectin Galanthus nivalis agglutinin; GNA).

机构信息

School of Biosciences, University of Durham, Durham, DH1 3LE, UK.

FUJIFILM Diosynth Biotechnologies Billingham, Billingham, TS23 1LH, UK.

出版信息

Microb Cell Fact. 2023 Aug 17;22(1):157. doi: 10.1186/s12934-023-02176-1.

Abstract

BACKGROUND

New bioinsecticides with novel modes of action are urgently needed to minimise the environmental and safety hazards associated with the use of synthetic chemical pesticides and to combat growing levels of pesticide resistance. The pea seed albumin PA1b knottin peptide is the only known proteinaceous inhibitor of insect vacuolar adenosine triphosphatase (V-ATPase) rotary proton pumps. Oral toxicity towards insect pests and an absence of activity towards mammals makes Pa1b an attractive candidate for development as a bioinsecticide. The purpose of this study was to investigate if Pichia pastoris could be used to express a functional PA1b peptide and if it's insecticidal activity could be enhanced via engineering to produce a fusion protein comprising the pea albumin protein fused to the mannose-specific snowdrop lectin (Galanthus nivalis agglutinin; GNA).

RESULTS

We report the production of a recombinant full-length pea albumin protein (designated PAF) and a fusion protein (PAF/GNA) comprised of PAF fused to the N-terminus of GNA in the yeast Pichia pastoris. PAF was orally toxic to pea (Acyrthosiphon pisum) and peach potato (Myzus persicae) aphids with respective, Day 5 LC values of 54 µM and 105 µM derived from dose-response assays. PAF/GNA was significantly more orally toxic as compared to PAF, with LC values tenfold (5 µM) and 3.3-fold (32 µM) lower for pea and peach potato aphids, respectively. By contrast, no phenotypic effects were observed for worker bumble bees (Bombus terristrus) fed PAF, GNA or PAF/GNA in acute toxicity assays. Confocal microscopy of pea aphid guts after pulse-chase feeding fluorescently labelled proteins provides evidence that enhanced efficacy of the fusion protein is attributable to localisation and retention of PAF/GNA to the gut epithelium. In contact assays the fusion protein was also found to be significantly more toxic towards A. pisum as compared to PAF, GNA or a combination of the two proteins.

CONCLUSIONS

Our results suggest that GNA mediated binding to V-type ATPase pumps acts to potentiate the oral and contact aphicidal activity of PAF. This work highlights potential for the future commercial development of plant protein-based bioinsecticides that offer enhanced target specificity as compared to chemical pesticides, and compatibility with integrated pest management strategies.

摘要

背景

为了最大限度地减少使用合成化学农药带来的环境和安全危害,并应对日益严重的农药抗性问题,迫切需要具有新型作用机制的新型生物杀虫剂。豌豆种子白蛋白 PA1b 卷曲肽是唯一已知的昆虫液泡三磷酸腺苷酶(V-ATPase)旋转质子泵的蛋白质抑制剂。豌豆白蛋白 PA1b 对昆虫具有口服毒性,对哺乳动物无活性,因此它是开发生物杀虫剂的有吸引力的候选物。本研究旨在探讨毕赤酵母是否可用于表达功能性 PA1b 肽,以及通过工程改造生产包含豌豆白蛋白蛋白与甘露糖特异性雪花莲凝集素(Galanthus nivalis agglutinin;GNA)融合的融合蛋白是否可以增强其杀虫活性。

结果

我们报告了全长豌豆白蛋白蛋白(命名为 PAF)和融合蛋白(PAF/GNA)的生产,该融合蛋白由 N 端融合到 GNA 的 PAF 组成,在酵母毕赤酵母中表达。PAF 对豌豆蚜(Acyrthosiphon pisum)和桃蚜(Myzus persicae)具有口服毒性,剂量反应试验得出的第 5 天 LC 值分别为 54 μM 和 105 μM。与 PAF 相比,PAF/GNA 显著更具口服毒性,对豌豆蚜和桃蚜的 LC 值分别低 10 倍(5 μM)和 3.3 倍(32 μM)。相比之下,在急性毒性试验中,喂食 PAF、GNA 或 PAF/GNA 的工蜂(Bombus terristrus)没有表现出表型效应。在对经过脉冲追踪喂食的荧光标记蛋白的豌豆蚜肠道进行共焦显微镜检查后,提供了证据表明融合蛋白的功效增强归因于 PAF/GNA 局部化并保留在肠上皮细胞中。在接触试验中,与 PAF、GNA 或两种蛋白的混合物相比,融合蛋白对 A. pisum 也具有显著更高的毒性。

结论

我们的结果表明,GNA 介导的与 V 型 ATP 酶泵的结合作用增强了 PAF 的口服和接触杀蚜虫活性。这项工作突出了与化学农药相比,具有增强的靶标特异性的植物蛋白基生物杀虫剂的未来商业开发潜力,并且与综合虫害管理策略兼容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a493/10436433/df3f15b24749/12934_2023_2176_Fig1_HTML.jpg

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