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亚致死剂量的新烟碱类杀虫剂吡虫啉可与蜜蜂化学感受蛋白1(CSP1)相互作用并抑制其功能。

Sublethal doses of neonicotinoid imidacloprid can interact with honey bee chemosensory protein 1 (CSP1) and inhibit its function.

作者信息

Li Hongliang, Tan Jing, Song Xinmi, Wu Fan, Tang Mingzhu, Hua Qiyun, Zheng Huoqing, Hu Fuliang

机构信息

Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Hangzhou 310018, PR China.

Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Hangzhou 310018, PR China.

出版信息

Biochem Biophys Res Commun. 2017 Apr 29;486(2):391-397. doi: 10.1016/j.bbrc.2017.03.051. Epub 2017 Mar 14.

Abstract

As a frequently used neonicotinoid insecticide, imidacloprid can impair the chemoreceptive behavior of honey bees even at sublethal doses, while the physiochemical mechanism has not been further revealed. Here, multiple fluorescence spectra, thermodynamic method, and molecular docking were used to study the interaction and the functional inhibition of imidacloprid to the recombinant CSP1 protein in Asian honey bee, Apis cerana. The results showed that the fluorescence intensity (λ = 332 nm) of CSP1 could be significantly quenched by imidacloprid in a dynamic mode. During the quenching process, ΔH > 0, ΔS > 0, indicating that the acting forces of imidacloprid with CSP1 are mainly hydrophobic interactions. Synchronous fluorescence showed that the fluorescence of CSP1 was mainly derived from tryptophan, and the hydrophobicity of tryptophan decreased with the increase of imidacloprid concentration. Molecular docking predicted the optimal pose and the amino acid composition of the binding process. Circular dichroism (CD) spectra showed that imidacloprid reduced the α-helix of CSP1 and caused the extension of the CSP1 peptide chain. In addition, the binding of CSP1 to floral scent β-ionone was inhibited by nearly 50% of the apparent association constant (K) in the presence of 0.28-2.53 ng/bee of imidacloprid, and the inhibition rate of nearly 95% at 3.75 ng/bee of imidacloprid at sublethal dose level. This study initially revealed the molecular physiochemical mechanism that sublethal doses of neonicotinoid still interact and inhibit the physiological function of the honey bees' chemoreceptive system.

摘要

作为一种常用的新烟碱类杀虫剂,吡虫啉即使在亚致死剂量下也会损害蜜蜂的化学感受行为,但其物理化学机制尚未得到进一步揭示。在此,我们使用多种荧光光谱、热力学方法和分子对接技术,研究了吡虫啉与中华蜜蜂重组CSP1蛋白的相互作用及其功能抑制作用。结果表明,吡虫啉能够以动态模式显著猝灭CSP1在332nm处的荧光强度。在猝灭过程中,ΔH>0,ΔS>0,表明吡虫啉与CSP1之间的作用力主要是疏水相互作用。同步荧光表明,CSP1的荧光主要来源于色氨酸,并且随着吡虫啉浓度的增加,色氨酸的疏水性降低。分子对接预测了结合过程的最佳构象和氨基酸组成。圆二色(CD)光谱表明,吡虫啉降低了CSP1的α-螺旋结构,导致CSP1肽链伸展。此外,在亚致死剂量水平下,当吡虫啉浓度为0.28-2.53 ng/只蜜蜂时,CSP1与花香β-紫罗兰酮的结合受到抑制,表观结合常数(K)降低近50%;当吡虫啉浓度为3.75 ng/只蜜蜂时,抑制率近95%。本研究初步揭示了亚致死剂量新烟碱类杀虫剂仍能与蜜蜂化学感受系统相互作用并抑制其生理功能的分子物理化学机制。

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