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Analysis of Cry1Ah Toxin-Binding Reliability to Midgut Membrane Proteins of the Asian Corn Borer

机译:对亚洲玉米螟脊柱膜蛋白的Cry1ah毒素结合可靠性分析

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Evolution of insect resistance to Bt toxins challenges the use of Cry toxins to control agricultural pests. In lepidopterans, Cry toxin affinity towards multiple midgut epithelial receptors has become a matter of dispute. Cry1Ah toxin-binding proteins were identified in the larval midgut of susceptible (ACB-BtS) and resistant (ACB-AhR) strains of the Asian corn borer (ACB). A pull-down assay was performed using biotinylated Cry1Ah toxin, and the binding proteins were identified by employing liquid chromatography–tandem mass spectrometry (LC-MS/MS). This study aimed to find the binding consistency of the midgut epithelial protein to the Cry1Ah toxin. The binding proteins from different fractions of SDS-PAGE showed a different pattern. We observed an isoform of prophenoloxidase PPO1b (UniProt Acc No. A0A1Q1MKI0), which was found only in the ACB-AhR fractions. Prophenoloxidase (proPO) is an extraordinary defense molecule activated in insect species during pathogen invasion and the wound healing process. Importantly, this prophenoloxidase might have direct/indirect interaction with the Cry1Ah toxin. Our data also suggest that factors like techniques, enrichment of binding proteins in the sample and the reversible and irreversible nature of the brush border membrane vesicles (BBMVs) to Cry toxins could cause the inconsistency in the protein–protein interactions. Moreover, inside the larva midgut, the influence of the Cry toxins under physiological conditions might be different from the laboratory procedures.
机译:昆虫抗性对Bt毒素的演变挑战使用哭泣毒素控制农业害虫。在鳞翅目,对多个中间简石受体的毒素亲和力已成为争执的问题。在敏感(ACB-BTS)的幼虫中肠和亚洲玉米螟(ACB)的抗性(ACB-AHR)菌株中鉴定了Cry1ah毒素结合蛋白。使用生物素化的Cry1ah毒素进行下拉测定,通过使用液相色谱 - 串联质谱(LC-MS / MS)来鉴定结合蛋白。该研究旨在找到中间肠蛋白与Cry1ah毒素的结合一致性。来自SDS-PAGE不同级分的结合蛋白显示出不同的图案。我们观察到丙甲酸钠酶PPO1B的同种型(Uniprot ACC No.AMKIO),其仅在ACB-AHR级分中发现。丙甲酸钠酶(PROPO)是在病原体侵袭和伤口愈合过程中在昆虫物种中激活的非凡防御分子。重要的是,该丙醇氧化酶可能具有与Cry1ah毒素的直接/间接相互作用。我们的数据还表明,样品中的富集蛋白质等因素以及刷边框膜囊泡(BBMV)的可逆和不可逆转性质中的富集毒素可能导致蛋白质 - 蛋白质相互作用的不一致。此外,在幼虫中,在生理条件下,哭泣毒素的影响可能与实验室程序不同。

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