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对质膜电位有影响的抗真菌H-ATP酶抑制剂的鉴定

Identification of Antifungal H-ATPase Inhibitors with Effect on Plasma Membrane Potential.

作者信息

Kjellerup Lasse, Gordon Sandra, Cohrt Karen O'Hanlon, Brown William Dalby, Fuglsang Anja Thoe, Winther Anne-Marie L

机构信息

Pcovery, Copenhagen, Denmark

Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg, Denmark.

出版信息

Antimicrob Agents Chemother. 2017 Jun 27;61(7). doi: 10.1128/AAC.00032-17. Print 2017 Jul.

Abstract

The plasma membrane H-ATPase (Pma1) is an essential fungal protein and a proposed target for new antifungal medications. The compounds in a small-molecule library containing ∼191,000 commercially available compounds were screened for their ability to inhibit plasma membranes containing Pma1. The overall hit rate was 0.2%, corresponding to 407 compounds. These hit compounds were further evaluated for ATPase selectivity and broad-spectrum antifungal activity. Following this work, one Pma1 inhibitor series based on compound 14 and analogs was selected for further evaluation. This compound series was able to depolarize the membrane and inhibit extracellular acidification in intact fungal cells concomitantly with a significant increase in intracellular ATP levels. Collectively, we suggest that these effects may be a common feature of Pma1 inhibitors. Additionally, the work uncovered a dual mechanism for the previously identified cationic peptide BM2, revealing fungal membrane disruption, in addition to Pma1 inhibition. The methods presented here provide a solid platform for the evaluation of Pma1-specific inhibitors in a drug development setting. The present inhibitors could serve as a starting point for the development of new antifungal agents with a novel mode of action.

摘要

质膜H - ATP酶(Pma1)是一种重要的真菌蛋白,也是新型抗真菌药物的潜在靶点。对一个包含约191,000种市售化合物的小分子文库中的化合物进行筛选,以检测它们抑制含有Pma1的质膜的能力。总体命中率为0.2%,对应407种化合物。对这些命中的化合物进一步评估其ATP酶选择性和广谱抗真菌活性。在这项工作之后,选择了基于化合物14及其类似物的一个Pma1抑制剂系列进行进一步评估。该化合物系列能够使完整真菌细胞的膜去极化并抑制细胞外酸化,同时细胞内ATP水平显著升高。我们认为,这些效应可能是Pma1抑制剂的共同特征。此外,这项工作揭示了先前鉴定的阳离子肽BM2的双重作用机制,除了抑制Pma1外,还揭示了其对真菌膜的破坏作用。本文介绍的方法为在药物开发环境中评估Pma1特异性抑制剂提供了一个坚实的平台。目前的抑制剂可作为开发具有新型作用模式的新型抗真菌药物的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1155/5487681/917d4cca5cd0/zac0071762900001.jpg

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