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隐丹参酮衍生物通过靶向昆虫几丁质分解酶和胆青素结合蛋白成为杀虫剂先导物。

Cryptolepine Derivatives Are Insecticide Leads by Targeting Insect Chitinolytic Enzymes and Bilin-Binding Protein.

作者信息

Xie Huijie, Jiang Wei-Qi, Ding Yi, Li An-Ping, Pang Zihan, Liang Jinhui, Zhang Shao-Yong, He Yuhang, Jing Chen-Xin, Zhang Zhi-Jun, Liu Ying-Qian, Liu Tian

机构信息

MOE Key Laboratory of Bio-Intelligent Manufacturing, School of Bioengineering, Dalian University of Technology, Dalian 116024, China.

School of Pharmacy, Lanzhou University, Lanzhou 730000, China.

出版信息

J Agric Food Chem. 2025 May 28;73(21):12563-12569. doi: 10.1021/acs.jafc.4c09863. Epub 2025 May 15.

Abstract

Multitarget inhibitors (MIs) against insect chitinolytic enzymes are potential pesticide candidates. However, currently known Mis suffers from low biological activity and limited possibilities for structural modification. Here, cryptolepine and its halogenated derivatives were discovered as MIs against all of four insect chitinolytic enzymes from (ChtI, ChtII, Chi-h and Hex1) with values at μM level. Notably, the inhibitory activities of cryptolepine can be increased by 1 order of magnitude through a simple two-site halogenation (CD-4). Molecular docking results indicated that halogen modifications may directly form halogen bonds with polar residues or change the electrostatic potential of the conjugation plane to enhance its π-π stacking interaction with tryptophan residues. Cryptolepine and CD-4 showed insecticidal activities toward both and . Interestingly, CD-4, but not cryptolepine, prevents the formation of the protective color in by competing with biliverdin for binding to the bilin-binding protein. This study not only reports new MIs as insecticide leads, but also provides a new idea for pest control by inhibiting its protective color.

摘要

针对昆虫几丁质分解酶的多靶点抑制剂(MIs)是潜在的农药候选物。然而,目前已知的MIs存在生物活性低和结构修饰可能性有限的问题。在此,隐丹参酮及其卤代衍生物被发现是针对四种昆虫几丁质分解酶(ChtI、ChtII、Chi-h和Hex1)的MIs,其抑制常数在微摩尔水平。值得注意的是,隐丹参酮的抑制活性可通过简单的双位点卤代(CD-4)提高1个数量级。分子对接结果表明,卤素修饰可能直接与极性残基形成氢键,或改变共轭平面的静电势,以增强其与色氨酸残基的π-π堆积相互作用。隐丹参酮和CD-4对小菜蛾和棉铃虫均表现出杀虫活性。有趣的是,CD-4而非隐丹参酮通过与胆绿素竞争结合胆素结合蛋白来阻止棉铃虫形成保护色。本研究不仅报道了新的作为杀虫剂先导的MIs,还为通过抑制害虫保护色进行害虫防治提供了新思路。

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