Wang Yan, Hu Jian-Shu, Lin Huang-Quan, Ip Tsz-Ming, Wan David Chi-Cheong
School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.
Division of Life Science and Center for Chinese Medicine, The Hong Kong University of Science and Technology, Clear Water Bay Road, Hong Kong SAR, China.
Phytomedicine. 2016 Nov 15;23(12):1469-1474. doi: 10.1016/j.phymed.2016.08.008. Epub 2016 Aug 29.
Traditionally, molecular docking is primarily employed to screen pure compounds; the top-ranking chemicals are subsequently selected for experimental validation. Unlike synthetic chemicals, most natural products are commercially unavailable. The isolation and purification of each natural product is extremely time-consuming, which has restricted the screening of lead compounds from natural products.
We developed a protocol, Herbalog, to facilitate the identification of bioactive phytochemicals through molecular docking.
We wrote a script using Python and Autodock Vina for docking; ligand displacement and adipolysis assays were used to determine the anti-fatty acid binding protein (FABP) 4 activity of bioactive extracts. An ultraperformance liquid chromatography quadrupole time-of-flight mass spectrometry system was applied for identifying major peaks of bioactive extracts.
Herbalog, a natural product database, contains 5,112 phytochemicals from 197 common herbs and a script that counts the number of hits from docking in each herb and calculates the hit rate of herbs. Herbalog prioritizes herbs according to their hit rates, and top-ranking herb candidates contain a large repertoire of hits. We used Herbalog as a screening tool and identified labdane diterpenoids from Andrographis paniculata as leading candidates of FABP4 inhibitors.
Herbalog facilitates the discovery of herbs that possess the highest number of inhibitors or activators against target proteins, which reduces the sample preparation time for preliminary validation.
传统上,分子对接主要用于筛选纯化合物;随后选择排名靠前的化学物质进行实验验证。与合成化学物质不同,大多数天然产物无法通过商业途径获得。每种天然产物的分离和纯化极其耗时,这限制了从天然产物中筛选先导化合物。
我们开发了一种名为Herbalog的方案,以促进通过分子对接鉴定生物活性植物化学物质。
我们使用Python和Autodock Vina编写了一个用于对接的脚本;使用配体置换和脂肪分解测定法来确定生物活性提取物的抗脂肪酸结合蛋白(FABP)4活性。应用超高效液相色谱四极杆飞行时间质谱系统来鉴定生物活性提取物的主要峰。
Herbalog是一个天然产物数据库,包含来自197种常见草药的5112种植物化学物质以及一个脚本,该脚本可统计每种草药对接的命中次数并计算草药的命中率。Herbalog根据命中率对草药进行排序,排名靠前的候选草药包含大量的命中物。我们将Herbalog用作筛选工具,并从穿心莲中鉴定出半日花烷二萜类化合物作为FABP4抑制剂的主要候选物。
Herbalog有助于发现针对靶蛋白具有最多抑制剂或激活剂的草药,这减少了初步验证的样品制备时间。