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抗锥虫 8-羟基萘啶类药物是二价过渡金属的螯合剂。

Antitrypanosomal 8-Hydroxy-Naphthyridines Are Chelators of Divalent Transition Metals.

机构信息

Wellcome Trust Centre for Anti-Infectives Research, Division of Biological Chemistry and Drug Discovery, School of Life Sciences, University of Dundee, Dundee, United Kingdom.

Diseases of the Developing World, GlaxoSmithKline, Madrid, Spain.

出版信息

Antimicrob Agents Chemother. 2018 Jul 27;62(8). doi: 10.1128/AAC.00235-18. Print 2018 Aug.

Abstract

The lack of information regarding the mechanisms of action (MoA) or specific molecular targets of phenotypically active compounds can prove a barrier to their development as chemotherapeutic agents. Here, we report the results of our orthogonal genetic, molecular, and biochemical studies to determine the MoA of a novel 7-substituted 8-hydroxy-1,6-naphthyridine (8-HNT) series that displays promising activity against and High-throughput loss-of-function genetic screens in highlighted two probable zinc transporters associated with resistance to these compounds. These transporters localized to the parasite Golgi apparatus. Directed by these findings, the role of zinc and other divalent cations in the MoA of these compounds was investigated. 8-HNT compounds were found to directly deplete intracellular levels of Zn, while the addition of exogenous Zn and Fe reduced the potency of compounds from this series. Detailed biochemical analyses confirmed that 8-HNT compounds bind directly to a number of divalent cations, predominantly Zn, Fe, and Cu, forming 2:1 complexes with one of these cations. Collectively, our studies demonstrate transition metal depletion, due to chelation, as the MoA of the 8-HNT series of compounds. Strategies to improve the selectivity of 8-HNT compounds are discussed.

摘要

缺乏关于表型活性化合物作用机制(MoA)或特定分子靶点的信息可能成为将其开发为化疗药物的障碍。在这里,我们报告了我们正交遗传、分子和生化研究的结果,以确定新型 7-取代 8-羟基-1,6-萘啶(8-HNT)系列的作用机制,该系列对 和 具有有希望的活性。高通量功能丧失遗传筛选突出了与这些化合物耐药相关的两个可能的锌转运体。这些转运体定位于寄生虫高尔基体。根据这些发现,研究了锌和其他二价阳离子在这些化合物作用机制中的作用。发现 8-HNT 化合物可直接耗尽细胞内 Zn 水平,而添加外源性 Zn 和 Fe 会降低该系列化合物的效力。详细的生化分析证实 8-HNT 化合物可直接与多种二价阳离子结合,主要是 Zn、Fe 和 Cu,与其中一种阳离子形成 2:1 络合物。总的来说,我们的研究表明,由于螯合作用,过渡金属耗竭是 8-HNT 系列化合物的作用机制。讨论了提高 8-HNT 化合物选择性的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ec/6105827/7ddc5b7c3edf/zac0081873280001.jpg

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