真菌衍生的甲基去磷蛋白通过抑制PfActin1靶向恶性疟原虫分离

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2025-02-18 DOI:10.1073/pnas.2418871122
Tiantian Jiang, Jin Woo Lee, Jennifer E. Collins, Samuel Schaefer, Daisy Chen, Flore Nardella, Karen Wendt, Thilini G. Peramuna, Raphaella Paes, James L. McLellan, Jasveen Bhasin, Gregory L. Durst, Kirsten K. Hanson, Debopam Chakrabarti, Robert H. Cichewicz, Elizabeth A. Winzeler
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摘要

本文报道了一种基于真菌曲霉甲基去磷磷支架家族的天然产物的发现和结构测定,该产物具有良好的抗疟原虫活性和对宿主细胞的选择性。最有效成员NPDG-F (ec50为550 nM)在Dd2中的体外进化及全基因组分析290nm (3D7),表明寄生虫对甲基去磷蛋白的抗性与PfActin1 (PF3D7_1246200)的突变密切相关,PfActin1是寄生虫发育所有阶段所需的至关重要的atp酶。与现有PfActin1晶体结构的分子对接研究表明,NPDG-F与已知的肌动蛋白抑制剂细胞松弛素d具有相同的变构结合袋。交叉抗性研究、与其他PfActin1抑制剂的等温图分析以及甲基脱氧磷蛋白家族的结构-活性关系支持了PfActin1在变构位点的直接靶向作用。当添加到离体培养中时,NPDG-F诱导疟原虫在血液和肝脏分裂阶段分裂子细胞化的形态异常。我们的数据提供了化学验证,PfActin1是一个有吸引力的泛生命周期靶点,并为设计更具选择性的抑制剂提供了策略。
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Fungal-derived methyldeoxaphomins target Plasmodium falciparum segregation through the inhibition of PfActin1
Herein we report the finding and structure determination of a natural product based on the methyldeoxaphomin scaffold family from the fungus Trichocladium asperum that shows promising antiplasmodial activity and selectivity against host cells. In vitro evolution and whole genome analysis in Plasmodium falciparum with the most potent member, NPDG-F (EC 50 of 550 nM in Dd2; 290 nM in 3D7), shows that parasite resistance to methyldeoxaphomins is strongly associated with mutations in PfActin1 (PF3D7_1246200), a critically essential ATPase needed for all stages of parasite development. Molecular docking study with available PfActin1 crystal structure shows NPDG-F occupies the same allosteric binding pocket as the known actin inhibitor cytochalasin D. The direct PfActin1 target engagement in the allosteric site was supported by cross-resistance studies, isobologram analysis with other PfActin1 inhibitors, and the structure–activity relationships for the methyldeoxaphomin family. When added to in vitro culture, NPDG-F induced morphological abnormalities in merozoite cellularization during schizogony in both the Plasmodium blood and liver stages. Our data provide chemical validation that PfActin1 is an attractive, pan-lifecycle target and inform strategies for the design of more selective inhibitors.
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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