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The proteasome as a target to combat malaria: Hits and Misses

机译:蛋白酶体作为抗击疟疾的靶点

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摘要

The proteasome plays a vital role throughout the life cycle as Plasmodium parasites quickly adapt to a new host and undergo a series of morphologic changes during asexual replication and sexual differentiation. Plasmodium carries three different types of protease complexes: typical eukaryotic proteasome (26S) that resides in the cytoplasm and the nucleus, a prokaryotic proteasome homolog ClpQ that resides in the mitochondria, and a caseinolytic protease complex ClpP that resides in the apicoplast. In silico prediction in conjunction with immunoprecipitation analysis of ubiquitin conjugates have suggested that over half of the Plasmodium falciparum proteome during asexual reproduction are potential targets for ubiquitination. The marked potency of multiple classes of proteasome inhibitors against all stages of the life cycle, synergy with the current frontline antimalarial, artemisinin, and recent advances identifying differences between Plasmodium and human proteasomes strongly support further drug development efforts.
机译:蛋白酶体在整个生命周期中起着至关重要的作用,因为疟原虫的寄生虫会迅速适应新的宿主,并在无性繁殖和性分化过程中发生一系列形态变化。疟原虫携带三种不同类型的蛋白酶复合物:驻留在细胞质和细胞核中的典型真核蛋白酶体(26S),驻留在线粒体中的原核蛋白酶体同源物ClpQ和驻留在质体中的酪蛋白水解蛋白酶复合物ClpP。在计算机模拟中结合泛素结合物的免疫沉淀分析表明,无性繁殖期间恶性疟原虫蛋白质组的一半以上是泛素化的潜在目标。多种蛋白酶体抑制剂对生命周期所有阶段的显着效力,与当前一线抗疟疾药物,青蒿素的协同作用以及鉴定疟原虫和人类蛋白酶体之间差异的最新进展有力地支持了进一步的药物开发工作。

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