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金属结合等排体作为金属酶抑制剂的新支架。

Metal-Binding Isosteres as New Scaffolds for Metalloenzyme Inhibitors.

机构信息

Department of Chemistry and Biochemistry , University of California , San Diego , California 92093 , United States.

出版信息

Inorg Chem. 2018 Aug 6;57(15):9538-9543. doi: 10.1021/acs.inorgchem.8b01632. Epub 2018 Jul 16.

Abstract

The principle of isosteres or bioisosteres in medicinal chemistry is a central and essential concept in modern drug discovery. For example, carboxylic acids are often replaced by bioisosteres to mitigate issues related to lipophilicity or acidity while retaining acidic characteristics in addition to hydrogen bond donor/acceptor abilities. Separately, the development of metal-binding pharmacophores (MBPs) for binding to the active site metal ion in metalloenzymes of therapeutic interest is an emerging area in the realm of fragment-based drug discovery (FBDD). The direct application of the bioisostere concept to MBPs has not been well-described or systematically investigated. Herein, the picolinic acid MBP is used as a case study for the development of MBP isosteres (so-called MBIs). Many of these isosteres are novel compounds, and data on their physicochemical properties, metal binding capacity, and metalloenzyme inhibition characteristics are presented. The results show that MBIs of picolinic acid generally retain metal coordinating properties and exhibit predictable metalloenzyme inhibitory activity while possessing a broad range of physicochemical properties (e.g., p K, log P). These findings demonstrate the use of bioisosteres results in an untapped source of metal binding functional groups suitable for metalloenzyme FBDD. These MBIs provide a previously unexplored route for modulating the physicochemical properties of metalloenzyme inhibitors and improving their drug-likeness.

摘要

在药物化学中,同型物或生物等排体原理是现代药物发现的核心和基本概念。例如,羧酸通常被生物等排体取代,以减轻亲脂性或酸性相关问题,同时保留酸性特征以及氢键供体/受体能力。此外,为了与治疗相关的金属酶的活性部位金属离子结合,开发金属结合药效团(MBP)是基于片段的药物发现(FBDD)领域的一个新兴领域。同型物概念在 MBP 中的直接应用尚未得到很好的描述或系统研究。在此,将吡啶甲酸 MBP 用作开发 MBP 同型物(所谓的 MBIs)的案例研究。其中许多同型物是新型化合物,提供了它们的物理化学性质、金属结合能力和金属酶抑制特性的数据。结果表明,吡啶甲酸的 MBIs 通常保留金属配位性质,并表现出可预测的金属酶抑制活性,同时具有广泛的物理化学性质(例如,pK、logP)。这些发现表明,生物等排体的使用为适合金属酶 FBDD 的金属结合功能基团提供了一个未被开发的来源。这些 MBIs 为调节金属酶抑制剂的物理化学性质并提高其类药性提供了一条以前未知的途径。

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