Special Infectious Agents Unit - BSL3, King Fahd Medical Research Centre, Jeddah, 20136, Saudi Arabia; Department of Medical Microbiology and Parasitology, Faculty of Medicine. King Abdulaziz University, Jeddah, 20136, Saudi Arabia.
Special Infectious Agents Unit - BSL3, King Fahd Medical Research Centre, Jeddah, 20136, Saudi Arabia; Department of Medical Laboratory Sciences, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah, 20136, Saudi Arabia.
Arch Biochem Biophys. 2024 Oct;760:110124. doi: 10.1016/j.abb.2024.110124. Epub 2024 Aug 17.
Cryptosporidium parvum (C. parvum), a protozoan parasite, is known to induce significant gastrointestinal disease in humans. Lactate dehydrogenase (LDH), a protein of C. parvum, has been identified as a potential therapeutic target for developing effective drugs against infection. This study utilized a computational drug discovery approach to identify potential drug molecules against the LDH protein of C. parvum. In the present investigation, we conducted a structure-based virtual screening of 55 phytochemicals from the Syzygium aromaticum (S. aromaticum). This process identified four phytochemicals, including Gallotannin 23, Eugeniin, Strictinin, and Ellagitannin, that demonstrated significant binding affinity and dynamic stability with LDH protein. Interestingly, these four compounds have been documented to possess antibacterial, antiviral, anti-inflammatory, and antioxidant properties. The docked complexes were simulated for 100 ns using Desmond to check the dynamic stability. Finally, the free binding energy was computed from the last 10ns MD trajectories. Gallotannin 23 and Ellagitannin exhibited considerable binding affinity and stability with the target protein among all four phytochemicals. These findings suggest that these predicted phytochemicals from S. aromaticum could be further explored as potential hit candidates for developing effective drugs against C. parvum infection. The in vitro and in vivo experimental validation is still required to confirm their efficacy and safety as LDH inhibitors.
微小隐孢子虫(C. parvum)是一种原生动物寄生虫,已知会引起人类严重的胃肠道疾病。乳酸脱氢酶(LDH)是微小隐孢子虫的一种蛋白质,已被确定为开发针对感染的有效药物的潜在治疗靶点。本研究利用计算药物发现方法来鉴定针对微小隐孢子虫 LDH 蛋白的潜在药物分子。在本研究中,我们对来自丁香(S. aromaticum)的 55 种植物化学物质进行了基于结构的虚拟筛选。该过程鉴定出了四种植物化学物质,包括鞣花单宁 23、杨梅素、莰菲醇和鞣花单宁,它们与 LDH 蛋白表现出显著的结合亲和力和动态稳定性。有趣的是,这些四种化合物已被证明具有抗菌、抗病毒、抗炎和抗氧化特性。使用 Desmond 模拟对接复合物 100ns 以检查动态稳定性。最后,从最后 10ns MD 轨迹计算自由结合能。在所有四种植物化学物质中,鞣花单宁 23 和鞣花单宁与靶蛋白表现出相当大的结合亲和力和稳定性。这些发现表明,这些来自丁香的预测植物化学物质可以进一步探索作为开发针对微小隐孢子虫感染的有效药物的潜在候选物。仍需要进行体外和体内实验验证,以确认它们作为 LDH 抑制剂的功效和安全性。