Graduate Institute of Cancer Biology and Drug Discovery, College of Medical Science and Technology, Taipei Medical University, Taipei, Taiwan.
Ph.D. Program for Cancer Molecular Biology and Drug Discovery, College of Medical Science and Technology, Taipei Medical University, Taipei, Taiwan.
Sci Rep. 2020 Jun 29;10(1):10510. doi: 10.1038/s41598-020-67420-9.
The immune system works in conjunction with inflammation. Excessive inflammation underlies various human diseases, such as asthma, diabetes and heart disease. Previous studies found that 5-lipoxygenase (5-LOX) plays a crucial role in metabolizing arachidonic acid into inflammatory mediators and is a potential therapeutic target. In this study, we performed an in silico approach to establish a site-moiety map (SiMMap) to screen for new 5-LOX inhibitors. The map is composed of several anchors that contain key residues, moiety preferences, and their interaction types (i.e., electrostatic (E), hydrogen-bonding (H), and van der Waals (V) interactions) within the catalytic site. In total, we identified one EH, one H, and five V anchors, within the 5-LOX catalytic site. Based on the SiMMap, three 5-LOX inhibitors (YS1, YS2, and YS3) were identified. An enzyme-based assay validated inhibitory activity of YS1, YS2, and YS3 against 5-LOX with an IC value of 2.7, 4.2, and 5.3 μM, respectively. All three inhibitors significantly decrease LPS-induced TNF-α and IL-6 production, which suggests its potential use an anti-inflammatory agent. In addition, the identified 5-LOX inhibitors contain a novel scaffold. The discovery of these inhibitors presents an opportunity for designing specific anti-inflammatory drugs.
免疫系统与炎症协同作用。过度的炎症是各种人类疾病的基础,如哮喘、糖尿病和心脏病。先前的研究发现,5-脂氧合酶(5-LOX)在将花生四烯酸代谢为炎症介质方面起着至关重要的作用,是一个潜在的治疗靶点。在这项研究中,我们采用了一种计算机模拟方法来建立一个位点-基团图(SiMMap),以筛选新的 5-LOX 抑制剂。该图谱由几个锚点组成,其中包含关键残基、基团偏好及其在催化位点内的相互作用类型(即静电(E)、氢键(H)和范德华(V)相互作用)。总共,我们在 5-LOX 催化位点中确定了一个 EH、一个 H 和五个 V 锚点。基于 SiMMap,我们鉴定了三种 5-LOX 抑制剂(YS1、YS2 和 YS3)。基于酶的测定验证了 YS1、YS2 和 YS3 对 5-LOX 的抑制活性,IC 值分别为 2.7、4.2 和 5.3 μM。这三种抑制剂均能显著降低 LPS 诱导的 TNF-α 和 IL-6 的产生,这表明其可能用作抗炎剂。此外,鉴定出的 5-LOX 抑制剂含有一种新型支架。这些抑制剂的发现为设计特定的抗炎药物提供了机会。