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改良的双环吡咯烷类似物可抑制体外生长并治愈体内感染。

Improved Bicyclic Pyrrolidine Analogues Inhibit Growth In Vitro and Cure Infection In Vivo.

作者信息

Uddin Taher, Xie Han, Mittal Payal, Ence Chloe C, Patil Shrushti, Sharma Amit, Melillo Bruno, Chatterjee Arnab K, Sibley L David

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63130, United States.

Calibr-Skaggs at Scripps Research, La Jolla, California 92037, United States.

出版信息

J Med Chem. 2025 Aug 28;68(16):17350-17363. doi: 10.1021/acs.jmedchem.5c00865. Epub 2025 Aug 8.

Abstract

Inhibition of phenylalanine tRNA synthetase (PheRS) by bicyclic pyrrolidines provides a potent and specific inhibition of parasite growth. Herein, we describe novel bicyclic pyrrolidines designed to explore structure-activity relationships with vs human PheRS. Modification of the biaryl alkyne extension, which fits into the phenylalanine-binding site, showed a strong preference for hydroxyl addition over and . Further addition of N to both the proximal and distal phenyl rings of the biaryl alkyne and to the methoxyphenyl urea moiety, which fits into a unique auxiliary site present in the parasite enzyme, identified compounds with reduced plasma protein binding and lower hERG activity. Finally, we identified a potent lead with improved pharmacokinetics, extended plasma exposure, central nervous system penetration, and low-dose cure of acute infection in mouse. Collectively, these findings advance new candidates for the treatment of toxoplasmosis based on selective and potent inhibitors of parasite PheRS.

摘要

双环吡咯烷对苯丙氨酸tRNA合成酶(PheRS)的抑制作用可有效且特异性地抑制寄生虫生长。在此,我们描述了旨在探索与寄生虫和人类PheRS构效关系的新型双环吡咯烷。适配苯丙氨酸结合位点的联芳基炔烃延伸部分的修饰显示,相比于其他位置,强烈倾向于在特定位置添加羟基。对联芳基炔烃的近端和远端苯环以及适配寄生虫酶中独特辅助位点的甲氧基苯基脲部分进一步添加氮,确定了血浆蛋白结合减少且hERG活性较低的化合物。最后,我们确定了一种具有改善药代动力学、延长血浆暴露时间、中枢神经系统渗透能力以及低剂量治愈小鼠急性感染能力的强效先导化合物。总体而言,这些发现基于对寄生虫PheRS的选择性和强效抑制剂,推进了治疗弓形虫病的新候选药物研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7a2/12415985/ba23c2f87ce7/nihms-2109012-f0084.jpg

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