首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Plasmodium falciparum exports the Golgi marker sphingomyelin synthase into a tubovesicular network in the cytoplasm of mature erythrocytes
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Plasmodium falciparum exports the Golgi marker sphingomyelin synthase into a tubovesicular network in the cytoplasm of mature erythrocytes

机译:恶性疟原虫将高尔基标记鞘磷脂合酶输出到成熟红细胞细胞质中的微管网络中

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摘要

This work describes two unusual features of membrane development in a eukaryotic cell. (a) The induction of an extensive network of tubovesicular membranes by the malaria parasite Plasmodium falciparum in the cytoplasm of the mature erythrocyte, and its visualization with two ceramide analogues C5-DMB-ceramide and C6-NBD-ceramide. "Sectioning" of the infected erythrocytes using laser confocal microscopy has allowed the reconstruction of detailed three-dimensional images of this novel membrane network. (b) The stage-specific export of sphingomyelin synthase, a biosynthetic activity concentrated in the Golgi of mammalian cells, to this tubovesicular network. Evidence is presented that in the extracellular merozoite stage the parasite retains sphingomyelin synthase within its plasma membrane. However, intracellular ring- and trophozoite-stage parasites export a substantial fraction (approximately 26%) of sphingomyelin synthase activity to membranes beyond their plasma membrane. Importantly we do not observe synthesis of new enzyme during these intracellular stages. Taken together these results strongly suggest that the export of this classic Golgi enzyme is developmentally regulated in Plasmodium. We discuss the significance of this export and the tubovesicular network with respect to membrane development and function in the erythrocyte cytosol.
机译:这项工作描述了真核细胞中膜发育的两个不同寻常的特征。 (a)疟原虫恶性疟原虫在成熟红细胞的细胞质中诱导广泛的肾小管膜网络,并用两种神经酰胺类似物C5-DMB-神经酰胺和C6-NBD-神经酰胺进行可视化。使用激光共聚焦显微镜对受感染的红细胞进行“分割”,可以重建这种新型膜网络的详细三维图像。 (b)鞘磷脂合成酶的阶段特异性出口到该肾小管网络中,这是一种生物合成活性,集中在哺乳动物细胞的高尔基体中。有证据表明,在胞外裂殖子阶段,寄生虫在其质膜内保留了鞘磷脂合酶。但是,细胞内环状和滋养体阶段的寄生虫将鞘磷脂合成酶活性的很大一部分(约26%)输出到质膜之外的膜。重要的是,我们在这些细胞内阶段未观察到新酶的合成。综上所述,这些结果强烈表明这种经典的高尔基酶的出口在疟原虫中受到发育调控。我们讨论了这种出口和肾小管网络对于红细胞胞质膜的发育和功能的重要性。

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