Université de Reims Champagne Ardenne, ESCAPE EA 7510, 51097 Reims, France - Université de Reims Champagne Ardenne, CNRS, ICMR 7312, 51097 Reims, France.
Université de Reims Champagne Ardenne, ESCAPE EA 7510, 51097 Reims, France.
Parasite. 2022;29:7. doi: 10.1051/parasite/2022008. Epub 2022 Feb 10.
Toxoplasmosis is a worldwide parasitosis that is generally benign. The infestation may pose a risk to immunocompromized patients and to fetuses when pregnant women have recently seroconverted. Current treatments have numerous side effects and chemoresistance is emerging, hence the need to find new anti-Toxoplasma gondii substances. This study focuses on the antiparasitic potential of lupane-type pentacyclic triterpenes isolated from the bark of black alder (Alnus glutinosa), as well as the hypothesis of their macromolecular target by an original method of reverse docking. Among the isolated triterpenes, betulone was the most active compound with an IC of 2.7 ± 1.2 μM, a CC greater than 80 μM, and a selectivity index of over 29.6. An additional study of the anti-T. gondii potential of commercially available compounds (betulonic acid methyl ester and betulonic acid) showed the important role of the C3 ketone function and the C28 oxidation level on the lupane-type triterpene in the antiparasitic activity since their IC and CC were similar to that of betulone. Finally, the most active compounds were subjected to the AMIDE reverse docking workflow. A dataset of 87 T. gondii proteins from the Protein Data Bank was created. It identified calcium-dependent protein kinase CDPK3 as the most likely target of betulin derivatives.
弓形虫病是一种全球性寄生虫病,通常是良性的。当孕妇最近血清转化时,感染可能对免疫功能低下的患者和胎儿构成风险。目前的治疗方法有许多副作用,而且出现了化疗耐药性,因此需要寻找新的抗弓形虫物质。本研究集中于从黑桤木(Alnus glutinosa)树皮中分离出的羽扇豆烷型五环三萜的驱虫潜力,以及通过原始的反向对接方法假设其大分子靶标的假说。在分离出的三萜中,桦木酮是最活跃的化合物,IC 为 2.7 ± 1.2 μM,CC 大于 80 μM,选择性指数超过 29.6。对市售化合物(桦木酮酸甲酯和桦木酮酸)的抗 T. gondii 潜力的进一步研究表明,C3 酮功能和 C28 氧化水平在羽扇豆烷型三萜的驱虫活性中起着重要作用,因为它们的 IC 和 CC 与桦木酮相似。最后,对最活跃的化合物进行了 AMIDE 反向对接工作流程。创建了来自蛋白质数据库的 87 种弓形虫蛋白数据集。它确定钙依赖性蛋白激酶 CDPK3 是桦木素衍生物的最可能靶标。