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Plasmodium falciparum ensures its amino acid supply with multiple acquisition pathways and redundant proteolytic enzyme systems

机译:恶性疟原虫可通过多种获取途径和冗余蛋白水解酶系统确保其氨基酸供应

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摘要

Degradation of host hemoglobin by the human malaria parasite Plasmodium falciparum is a massive metabolic process. What role this degradation plays and whether it is essential for parasite survival have not been established, nor have the roles of the various degradative enzymes been clearly defined. We report that P. falciparum can grow in medium containing a single amino acid (isoleucine, the only amino acid missing from human hemoglobin). In this medium, growth of hemoglobin-degrading enzyme gene knockout lines (missing falcipain-2 and plasmepsins alone or in combination) is impaired. Blockade of plasmepsins with the potent inhibitor pepstatin A has a minimal effect on WT parasite growth but kills falcipain-2 knockout parasites at low concentrations and is even more potent on falcipain-2, plasmepsin I and IV triple knockout parasites. We conclude that: (i) hemoglobin degradation is necessary for parasite survival; (ii) hemoglobin degradation is sufficient to supply most of the parasite’s amino acid requirements; (iii) external amino acid acquisition and hemoglobin digestion are partially redundant nutrient pathways; (iv) hemoglobin degradation uses dual protease families with overlapping function; and (v) hemoglobin-degrading plasmepsins are not promising drug targets.
机译:人类疟原虫恶性疟原虫对宿主血红蛋白的降解是一个巨大的代谢过程。还没有确定这种降解作用是什么,以及它是否对寄生虫的生存至关重要,也没有明确定义各种降解酶的作用。我们报告恶性疟原虫可以在含有单个氨基酸(异亮氨酸,人类血红蛋白中唯一缺失的氨基酸)的培养基中生长。在这种培养基中,血红蛋白降解酶基因敲除品系(单独或组合缺少falcipain-2和纤溶酶)的生长受到损害。用有效的抑制剂胃蛋白酶抑制素A阻止血纤维蛋白酶对WT寄生虫的生长影响最小,但以低浓度杀死Falcipain-2敲除寄生虫,对Falcipain-2,I的血纤维蛋白溶酶I和IV的三联敲除寄生虫更有效。我们得出以下结论:(i)血红蛋白降解对于寄生虫生存是必要的; (ii)血红蛋白的降解足以满足大多数寄生虫的氨基酸需求; (iii)外部氨基酸获取和血红蛋白消化是部分多余的营养途径; (iv)血红蛋白降解使用具有重叠功能的双重蛋白酶家族; (v)降解血红蛋白的纤溶酶不是有希望的药物靶标。

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