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Thiostrepton and Derivatives Exhibit Antimalarial and Gametocytocidal Activity by Dually Targeting Parasite Proteasome and Apicoplast▿ †

机译:硫链霉菌素和衍生物通过双重靶向寄生虫蛋白酶体和Apicoplast来表现出抗疟和杀细胞活性。

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摘要

Ribosome-targeting antibiotics exert their antimalarial activity on the apicoplast of the malaria parasite, an organelle of prokaryote origin having essential metabolic functions. These antibiotics typically cause a delayed-death phenotype, which manifests in parasite killing during the second replication cycle following administration. As an exception, treatment with the antibiotic thiostrepton results in an immediate killing. We recently demonstrated that thiostrepton and its derivatives interfere with the eukaryotic proteasome, a multimeric protease complex that is important for the degradation of ubiquitinated proteins. Here, we report that the thiostrepton-based compounds are active against chloroquine-sensitive and -resistant Plasmodium falciparum, where they rapidly eliminate parasites before DNA replication. The minor parasite fraction that escapes the fast killing of the first replication cycle is arrested in the schizont stage of the following cycle, displaying a delayed-death phenotype. Thiostrepton further exhibits gametocytocidal activity by eliminating gametocytes, the sexual precursor cells that are crucial for parasite transmission to the mosquito. Compound treatment results in an accumulation of ubiquitinated proteins in the blood stages, indicating an effect on the parasite proteasome. In accordance with these findings, expression profiling revealed that the proteasome is present in the nucleus and cytoplasm of trophozoites, schizonts, and gametocytes. In conclusion, thiostrepton derivatives represent promising candidates for malaria therapy by dually acting on two independent targets, the parasite proteasome and the apicoplast, with the capacity to eliminate both intraerythrocytic asexual and transmission stages of the parasite.
机译:靶向核糖体的抗生素对疟原虫的一种原代细胞器具有重要的代谢功能的疟原虫的apicoplast发挥其抗疟疾的活性。这些抗生素通常引起延迟死亡表型,其表现为在施用后的第二个复制周期期间杀死寄生虫。作为例外,用抗生素硫代链霉菌素治疗会导致立即死亡。我们最近证明,硫链丝菌肽及其衍生物干扰了真核蛋白酶体,这是一种多聚体蛋白酶复合物,对降解泛素化蛋白很重要。在这里,我们报道了基于硫链丝菌肽的化合物对氯喹敏感和耐药的恶性疟原虫具有活性,它们在DNA复制之前可以快速消除寄生虫。逃脱了第一个复制周期的快速杀死的次要寄生虫部分被阻止在下一周期的裂殖体阶段,表现出延迟死亡表型。硫排蛋白通过消除配子细胞而进一步表现出杀细胞活性,配子细胞是寄生虫向蚊子传播至关重要的有性前体细胞。复合处理导致血液阶段泛素化蛋白的积累,表明对寄生虫蛋白酶体有影响。根据这些发现,表达谱分析表明蛋白酶体存在于滋养体,裂殖体和配子体细胞的细胞核和细胞质中。总之,硫代链霉菌素衍生物通过双重作用于寄生虫蛋白酶体和apicoplast这两个独立的靶标,具有消除疟原虫内无性和寄生虫传播阶段的能力,代表了疟疾治疗的有希望的候选者。

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