酶
昆虫
生物化学
化学
药理学
生物
毒理
植物
作者
Huijie Xie,Wei‐Qi Jiang,Yi Ding,An‐Ping Li,Zihan Pang,Jinhui Liang,Shaoyong Zhang,Yuhang He,Chen-Xin Jing,Zhijun Zhang,Ying‐Qian Liu,Tian Liu
标识
DOI:10.1021/acs.jafc.4c09863
摘要
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 Ostrinia furnacalis ( Of ChtI, Of ChtII, Of Chi-h and Of Hex1) with K i 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 O. furnacalis and Plutella xylostella . Interestingly, CD-4, but not cryptolepine, prevents the formation of the protective color in P. xylostella 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.
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