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具有改善的hERG和细胞毒性特征的螺环MmpL3抑制剂作为生长抑制剂

Spirocycle MmpL3 Inhibitors with Improved hERG and Cytotoxicity Profiles as Inhibitors of Growth.

作者信息

Ray Peter C, Huggett Margaret, Turner Penelope A, Taylor Malcolm, Cleghorn Laura A T, Early Julie, Kumar Anuradha, Bonnett Shilah A, Flint Lindsay, Joerss Douglas, Johnson James, Korkegian Aaron, Mullen Steven, Moure Abraham L, Davis Susan H, Murugesan Dinakaran, Mathieson Michael, Caldwell Nicola, Engelhart Curtis A, Schnappinger Dirk, Epemolu Ola, Zuccotto Fabio, Riley Jennifer, Scullion Paul, Stojanovski Laste, Massoudi Lisa, Robertson Gregory T, Lenaerts Anne J, Freiberg Gail, Kempf Dale J, Masquelin Thierry, Hipskind Philip A, Odingo Joshua, Read Kevin D, Green Simon R, Wyatt Paul G, Parish Tanya

机构信息

Drug Discovery Unit, Division of Biological Chemistry and Drug Discovery, College of Life Sciences, University of Dundee, Dundee DD1 5EH, U.K.

TB Discovery Research, Infectious Disease Research Institute, 1616 Eastlake Avenue East, Suite 400, Seattle, Washington 98102, United States.

出版信息

ACS Omega. 2021 Jan 13;6(3):2284-2311. doi: 10.1021/acsomega.0c05589. eCollection 2021 Jan 26.

Abstract

With the emergence of multi-drug-resistant strains of there is a pressing need for new oral drugs with novel mechanisms of action. A number of scaffolds with potent anti-tubercular activity have been identified from phenotypic screening that appear to target MmpL3. However, the scaffolds are typically lipophilic, which facilitates partitioning into hydrophobic membranes, and several contain basic amine groups. Highly lipophilic basic amines are typically cytotoxic against mammalian cell lines and have associated off-target risks, such as inhibition of human ether-à-go-go related gene (hERG) and IKr potassium current modulation. The spirocycle compound was reported to target MmpL3 and displayed promising efficacy in a murine model of acute tuberculosis (TB) infection. However, this highly lipophilic monobasic amine was cytotoxic and inhibited the hERG ion channel. Herein, the related spirocycles () are described, which were identified following phenotypic screening of the Eli Lilly corporate library against . The novel N-alkylated pyrazole portion offered improved physicochemical properties, and optimization led to identification of a zwitterion series, exemplified by lead , with decreased HepG2 cytotoxicity as well as limited hERG ion channel inhibition. Strains with mutations in MmpL3 were resistant to , and under replicating conditions, demonstrated bactericidal activity against . Unfortunately, compound had no efficacy in an acute model of TB infection; this was most likely due to the exposure remaining above the minimal inhibitory concentration for only a limited time.

摘要

随着多重耐药菌株的出现,迫切需要具有新作用机制的新型口服药物。通过表型筛选已鉴定出许多具有强效抗结核活性的骨架,这些骨架似乎靶向MmpL3。然而,这些骨架通常具有亲脂性,这有利于它们分配到疏水膜中,并且有几种含有碱性胺基。高度亲脂性的碱性胺通常对哺乳动物细胞系具有细胞毒性,并存在相关的脱靶风险,例如抑制人类醚 - 去极化相关基因(hERG)和IKr钾电流调节。据报道,螺环化合物靶向MmpL3,并在急性结核病(TB)感染的小鼠模型中显示出有前景的疗效。然而,这种高度亲脂性的一元胺具有细胞毒性并抑制hERG离子通道。在此描述了相关的螺环化合物(),它们是在礼来公司文库针对进行表型筛选后鉴定出来的。新型N - 烷基化吡唑部分提供了改善的物理化学性质,通过优化得到了一个两性离子系列,以先导化合物为例,其对HepG2细胞毒性降低以及对hERG离子通道的抑制有限。MmpL3发生突变的菌株对具有抗性,并且在复制条件下,对具有杀菌活性。不幸的是,化合物在急性TB感染模型中没有疗效;这很可能是因为暴露仅在有限的时间内保持在最低抑菌浓度以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c05a/7841955/844b1063f344/ao0c05589_0002.jpg

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