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埃及伊蚊内向整流钾通道强效选择性抑制剂的发现与特性研究

Discovery and characterization of a potent and selective inhibitor of Aedes aegypti inward rectifier potassium channels.

作者信息

Raphemot Rene, Rouhier Matthew F, Swale Daniel R, Days Emily, Weaver C David, Lovell Kimberly M, Konkel Leah C, Engers Darren W, Bollinger Sean R, Hopkins Corey, Piermarini Peter M, Denton Jerod S

机构信息

Department of Anesthesiology, Vanderbilt University Medical Center, Nashville, TN, United States of America; Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, TN, United States of America.

Department of Entomology, Ohio Agricultural Research and Development Center, The Ohio State University, Wooster, OH, United States of America.

出版信息

PLoS One. 2014 Nov 6;9(11):e110772. doi: 10.1371/journal.pone.0110772. eCollection 2014.

Abstract

Vector-borne diseases such as dengue fever and malaria, which are transmitted by infected female mosquitoes, affect nearly half of the world's population. The emergence of insecticide-resistant mosquito populations is reducing the effectiveness of conventional insecticides and threatening current vector control strategies, which has created an urgent need to identify new molecular targets against which novel classes of insecticides can be developed. We previously demonstrated that small molecule inhibitors of mammalian Kir channels represent promising chemicals for new mosquitocide development. In this study, high-throughput screening of approximately 30,000 chemically diverse small-molecules was employed to discover potent and selective inhibitors of Aedes aegypti Kir1 (AeKir1) channels heterologously expressed in HEK293 cells. Of 283 confirmed screening 'hits', the small-molecule inhibitor VU625 was selected for lead optimization and in vivo studies based on its potency and selectivity toward AeKir1, and tractability for medicinal chemistry. In patch clamp electrophysiology experiments of HEK293 cells, VU625 inhibits AeKir1 with an IC50 value of 96.8 nM, making VU625 the most potent inhibitor of AeKir1 described to date. Furthermore, electrophysiology experiments in Xenopus oocytes revealed that VU625 is a weak inhibitor of AeKir2B. Surprisingly, injection of VU625 failed to elicit significant effects on mosquito behavior, urine excretion, or survival. However, when co-injected with probenecid, VU625 inhibited the excretory capacity of mosquitoes and was toxic, suggesting that the compound is a substrate of organic anion and/or ATP-binding cassette (ABC) transporters. The dose-toxicity relationship of VU625 (when co-injected with probenecid) is biphasic, which is consistent with the molecule inhibiting both AeKir1 and AeKir2B with different potencies. This study demonstrates proof-of-concept that potent and highly selective inhibitors of mosquito Kir channels can be developed using conventional drug discovery approaches. Furthermore, it reinforces the notion that the physical and chemical properties that determine a compound's bioavailability in vivo will be critical in determining the efficacy of Kir channel inhibitors as insecticides.

摘要

登革热和疟疾等通过受感染雌蚊传播的媒介传播疾病影响着世界近一半人口。对杀虫剂产生抗药性的蚊虫种群的出现,正在降低传统杀虫剂的效力,并威胁到当前的病媒控制策略,这迫切需要确定新的分子靶点,以便开发新型杀虫剂。我们之前证明,哺乳动物Kir通道的小分子抑制剂是开发新型灭蚊剂的有前景的化学物质。在本研究中,我们采用高通量筛选约30000种化学性质不同的小分子,以发现异源表达于HEK293细胞中的埃及伊蚊Kir1(AeKir1)通道的强效和选择性抑制剂。在283个经确认的筛选“命中”化合物中,小分子抑制剂VU625基于其对AeKir1的效力、选择性以及药物化学的可处理性,被选用于先导化合物优化和体内研究。在HEK293细胞的膜片钳电生理实验中,VU625抑制AeKir1的IC50值为96.8 nM,使VU625成为迄今为止所描述的最有效的AeKir1抑制剂。此外,非洲爪蟾卵母细胞的电生理实验表明,VU625是AeKir2B的弱抑制剂。令人惊讶的是,注射VU625未能对蚊子的行为、尿液排泄或存活产生显著影响。然而,当与丙磺舒共同注射时,VU625抑制了蚊子的排泄能力并具有毒性,这表明该化合物是有机阴离子和/或ATP结合盒(ABC)转运蛋白的底物。VU625(与丙磺舒共同注射时)的剂量-毒性关系呈双相性,这与该分子以不同效力抑制AeKir1和AeKir2B一致。本研究证明了使用传统药物发现方法开发强效和高度选择性的蚊虫Kir通道抑制剂的概念验证。此外,它强化了这样一种观念,即决定化合物体内生物利用度的物理和化学性质对于确定Kir通道抑制剂作为杀虫剂的功效至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e69a/4222822/927ee9934f8e/pone.0110772.g006.jpg

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