Gallinger Tom L, Aboagye Samuel Y, Obermann Wiebke, Weiss Michael, Grünweller Arnold, Unverzagt Carlo, Williams David L, Schlitzer Martin, Haeberlein Simone
Department of Pharmaceutical Chemistry, Philipps University Marburg, 35032 Marburg, Germany.
Department of Microbial Pathogens and Immunity, Rush University Medical Center, Chicago, IL 60612, USA.
Pharmaceuticals (Basel). 2022 Jan 19;15(2):119. doi: 10.3390/ph15020119.
Schistosomiasis is a neglected tropical disease caused by blood flukes of the genus . In silico screenings of compounds for the identification of novel anti-parasitic drug candidates have received considerable attention in recent years, including the screening of natural compounds. For the first time, we investigated molecules from insects, a rather neglected source in drug discovery, in an in silico screening approach to find novel antischistosomal compounds. Based on the Dictionary of Natural Products (DNP), we created a library of 1327 insect compounds suitable for molecular docking. A structure-based virtual screening against the crystal structure of a known druggable target in , the thioredoxin glutathione reductase (SmTGR), was performed. The top ten compounds predominantly originated from beetles and were predicted to interact particularly with amino acids in the doorstop pocket of SmTGR. For one compound from a jewel beetle, buprestin H, we tested and confirmed antischistosomal activity against adult and juvenile parasites in vitro. At concentrations with anti-parasitic activity, we could also exclude any unspecific cytotoxic activity against human HepG2 cells. This study highlights the potential of insect molecules for the identification of novel antischistosomal compounds. Our library of insect-derived molecules could serve not only as basis for future in silico screenings against additional target proteins of schistosomes, but also of other parasites.
血吸虫病是一种由血吸虫属血吸虫引起的被忽视的热带病。近年来,通过计算机筛选化合物以鉴定新型抗寄生虫药物候选物受到了广泛关注,包括天然化合物的筛选。我们首次采用计算机筛选方法,研究了昆虫来源的分子(药物发现中一个相当被忽视的来源),以寻找新型抗血吸虫化合物。基于《天然产物词典》(DNP),我们创建了一个包含1327种适合分子对接的昆虫化合物的文库。针对日本血吸虫中一种已知的可成药靶点——硫氧还蛋白谷胱甘肽还原酶(SmTGR)的晶体结构进行了基于结构的虚拟筛选。排名前十的化合物主要来源于甲虫,预计它们会与SmTGR门挡口袋中的氨基酸发生特异性相互作用。对于一种来自吉丁虫的化合物——吉丁菌素H,我们在体外测试并证实了其对成虫和幼虫寄生虫的抗血吸虫活性。在具有抗寄生虫活性的浓度下,我们还排除了其对人HepG2细胞的任何非特异性细胞毒性活性。这项研究突出了昆虫分子在鉴定新型抗血吸虫化合物方面的潜力。我们的昆虫源分子文库不仅可以作为未来针对血吸虫其他靶蛋白进行计算机筛选的基础,也可用于其他寄生虫的筛选。