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Glucosylceramide synthesis inhibition affects cell cycle progression membrane trafficking and stage differentiation in Giardia lamblia

机译:葡萄糖基神经酰胺合成抑制影响贾第鞭毛虫的细胞周期进程膜运输和阶段分化

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摘要

Synthesis of glucosylceramide via glucosylceramide synthase (GCS) is a crucial event in higher eukaryotes, both for the production of complex glycosphingolipids and for regulating cellular levels of ceramide, a potent antiproliferative second messenger. In this study, we explored the dependence of the early branching eukaryote Giardia lamblia on GCS activity. Biochemical analyses revealed that the parasite has a GCS located in endoplasmic reticulum (ER) membranes that is active in proliferating and encysting trophozoites. Pharmacological inhibition of GCS induced aberrant cell division, characterized by arrest of cytokinesis, incomplete cleavage furrow formation, and consequent block of replication. Importantly, we showed that increased ceramide levels were responsible for the cytokinesis arrest. In addition, GCS inhibition resulted in prominent ultrastructural abnormalities, including accumulation of cytosolic vesicles, enlarged lysosomes, and clathrin disorganization. Moreover, anterograde trafficking of the encystations-specific protein CWP1 was severely compromised and resulted in inhibition of stage differentiation. Our results reveal novel aspects of lipid metabolism in G. lamblia and specifically highlight the vital role of GCS in regulating cell cycle progression, membrane trafficking events, and stage differentiation in this parasite. In addition, we identified ceramide as a potent bioactive molecule, underscoring the universal conservation of ceramide signaling in eukaryotes.
机译:通过葡糖神经酰胺合酶(GCS)合成葡糖神经酰胺是高级真核生物中的关键事件,对于生产复杂的鞘糖脂和调节神经酰胺(一种有效的抗增殖第二信使)而言都至关重要。在这项研究中,我们探索了早期分支真核生物贾第鞭毛虫对GCS活性的依赖性。生化分析表明,该寄生虫的GCS位于内质网(ER)膜中,在滋养体和滋养体中具有活性。 GCS引起的药理学抑制作用是异常的细胞分裂,其特征在于细胞分裂的停滞,不完全的切割沟形成以及随后的复制阻滞。重要的是,我们表明神经酰胺水平升高是细胞分裂阻滞的原因。此外,GCS抑制导致明显的超微结构异常,包括胞浆囊泡堆积,溶酶体增大和网格蛋白紊乱。此外,侵入位点特异性蛋白CWP1的顺行贩运受到严重损害,并导致阶段分化的抑制。我们的结果揭示了羔羊脂代谢中脂质代谢的新方面,并特别强调了GCS在调节此寄生虫的细胞周期进程,膜运输事件和阶段分化中的重要作用。此外,我们确定了神经酰胺是一种有效的生物活性分子,强调了在真核生物中神经酰胺信号的普遍保守性。

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