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Published on: July 30, 2017
Discovery of a Novel Small-Molecule Inhibitor Targeting Myosin I to Control Colletotrichum siamense Anthracnose
Songtao Liu1,2, Fei Liu1, Xiyuan Zhu2
1Jiangsu Key Laboratory for Conservation and Utilization of Plant Resources, Jiangsu Province Engineering Research Center of Eco-cultivation and High value Utilization of Chinese Medicinal Materials, Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing 210014, China.
Abstract:
Anthracnose caused by Colletotrichum siamense severely impacts global crop and forest productivity. Here, we identify A22, a novel small-molecule inhibitor that targets C. siamense myosin I (CsMyoI), and this represents a previously untapped antifungal mechanism. Phenotypic screening, ATPase inhibition, and microscale thermophoresis (MST) confirmed that A22 binds to CsMyoI and disrupts its motor activity. Molecular dynamics simulations revealed stable interactions with the conserved phenamacril binding pocket, with a critical K379 substitution explaining species-specific differences in inhibitor sensitivity. Notably, A22 exhibited no cross-resistance with widely used fungicides, such as carbendazim or pyraclostrobin. In greenhouse trials, A22 outperformed the commercial fungicide prochloraz in controlling anthracnose on pepper, mango, and strawberry, even at low concentrations, and also promoted strawberry growth. These findings establish myosin I as a novel antifungal target and present A22 as a potent agent with a unique mode of action, offering a promising strategy for managing anthracnose and fungicide-resistant fungal strains.
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