Ema Masaki, Xu Yong, Gehrke Sebastian, Wagner Gerd K
King's College London , Department of Chemistry , Faculty of Natural & Mathematical Sciences , Britannia House , 7 Trinity Street , London , SE1 1DB , UK . Email:
King's College London , Institute of Pharmaceutical Science , Faculty of Life Sciences & Medicine , UK.
Medchemcomm. 2017 Nov 29;9(1):131-137. doi: 10.1039/c7md00550d. eCollection 2018 Jan 1.
Bacterial glycosyltransferases are potential targets for the development of novel antibiotics and anti-virulence agents. Most existing glycosyltransferase inhibitors are substrate analogues with limited potential for drug development. The identification of alternative inhibitor chemotypes is therefore of great interest for medicinal chemistry, drug discovery and chemical glycobiology. We describe the application of a biochemical glycosyltransferase assay to screen a small compound library containing three distinct chemical scaffolds (nucleosides, steroids and 5-methyl pyrazol-3-ones) against the retaining α-1,4-galactosyltransferase LgtC from . While no genuine LgtC inhibitory activity was observed in the nucleoside and steroid series, the best hit compounds in the 5-methyl pyrazol-3-one series showed low micromolar activity. We adapted our assay protocol to develop initial structure-activity relationships in this series, and to establish the target selectivity of the most potent inhibitor over two other glycosyltransferases. Our results provide insights into the activity of this class of non-substrate-like glycosyltransferase inhibitors, and highlight important general pitfalls for inhibitor screening against this enzyme family. Key elements of our experimental design, including a validated single-concentration protocol for inhibitor screening, and our process for elimination of false positives, are, in principle, directly transferable to many other sugar-nucleotide-dependent glycosyltransferases.
细菌糖基转移酶是新型抗生素和抗毒力药物开发的潜在靶点。大多数现有的糖基转移酶抑制剂是底物类似物,药物开发潜力有限。因此,鉴定其他抑制剂化学类型对于药物化学、药物发现和化学生物学具有重要意义。我们描述了一种生化糖基转移酶检测方法的应用,该方法用于筛选一个包含三种不同化学骨架(核苷、甾体和5-甲基吡唑-3-酮)的小化合物库,以检测来自[具体来源未给出]的保留型α-1,4-半乳糖基转移酶LgtC。虽然在核苷和甾体系列中未观察到真正的LgtC抑制活性,但5-甲基吡唑-3-酮系列中的最佳命中化合物显示出低微摩尔活性。我们调整了检测方案,以建立该系列中的初步构效关系,并确定最有效抑制剂对另外两种糖基转移酶的目标选择性。我们的结果为这类非底物样糖基转移酶抑制剂的活性提供了见解,并突出了针对该酶家族进行抑制剂筛选时的重要常见陷阱。我们实验设计的关键要素,包括用于抑制剂筛选的经过验证的单浓度方案,以及我们消除假阳性的过程,原则上可直接应用于许多其他依赖糖核苷酸的糖基转移酶。