首页> 外文期刊>The Journal of biological chemistry >The Plasma Membrane of Bloodstream-form African Trypanosomes Confers Susceptibility and Specificity to Killing by Hydrophobic Peptides
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The Plasma Membrane of Bloodstream-form African Trypanosomes Confers Susceptibility and Specificity to Killing by Hydrophobic Peptides

机译:血液形式的血浆膜的非洲锥虫赋予疏水肽杀死易感性和特异性

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摘要

Trypanosoma brucei is the causative agent of both a veterinary wasting disease and human African trypanosomiasis, or sleeping sickness. The cell membrane of the developmental stage found within the mammalian host, the bloodstream form (BSF), is highly dynamic, exhibiting rapid rates of endocytosis and lateral flow of glycosylphosphatidylinositol-anchored proteins. Here, we show that the cell membrane of these organisms is a target for killing by small hydrophobic peptides that increase the rigidity of lipid bilayers. Specifically, we have derived trypanocidal peptides that are based upon the hydrophobic N-terminal signal sequences of human apolipoproteins. These peptides selectively partitioned into the plasma membrane of BSF trypanosomes, resulting in an increase in the rigidity of the bilayer, dramatic changes in cell motility, and subsequent cell death. No killing of the developmental stage found within the insect midgut, the procyclic form, was observed. Additionally, the peptides exhibited no toxicity toward mammalian cell lines and did not induce hemolysis. Studies with model liposomes indicated that bilayer fluidity dictates the susceptibility of membranes to manipulation by hydrophobic peptides. We suggest that the composition of the BSF trypanosome cell membrane confers a high degree of fluidity and unique susceptibility to killing by hydrophobic peptides and is therefore a target for the development of trypanocidal drugs.
机译:葡萄球菌瘤Brucei是兽医浪费疾病和人类非洲锥虫病或睡眠疾病的致病因子。在哺乳动物宿主内发现的发育阶段的细胞膜,血流形式(BSF)是高度动态的,表现出快速的内吞作用和糖基磷脂酰肌醇锚定蛋白的侧向流动。在这里,我们表明这些生物的细胞膜是通过小疏水性肽杀死的靶标,这增加了脂质双层的刚性。具体地,我们具有基于人载体蛋白的疏水性N-末端信号序列的衍生胰蛋白酶肽。这些肽选择性地分配到BSF锥虫的血浆膜中,导致双层的刚性增加,细胞运动性的显着变化以及随后的细胞死亡。没有杀死昆虫中肠,药物形式中发现的发育阶段。另外,肽对哺乳动物细胞系表现出毒性,并且没有诱导溶血。模型脂质体的研究表明,双层流动性决定了疏水肽操纵膜的易感性。我们建议BSF锥虫细胞膜的组成赋予高度的流动性,并通过疏水性肽杀死独特的敏感性,因此是促蛋白质药物的发育的靶标。

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