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首页> 外文期刊>Molecular biology of the cell >Centrin1 is required for organelle segregation and cytokinesis in Trypanosoma brucei
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Centrin1 is required for organelle segregation and cytokinesis in Trypanosoma brucei

机译:布氏锥虫的细胞器分离和胞质分裂需要Centrin1

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摘要

Centrin is a calcium-binding centrosome/basal body-associated protein involved in duplication and segregation of these organelles in eukaryotes. We had shown that disruption of one of the centrin genes (centrin1) in Leishmania amastigotes resulted in failure of both basal body duplication and cytokinesis. Here, we undertook to define the role of centrin1 (TbCen1) in the duplication and segregation of basal body and its associated organelles kinetoplast and Golgi, as well as its role in cytokinesis of the procyclic form of Trypanosoma brucei by depleting its protein using RNA inhibition methodology. TbCen1-depleted cells showed significant reduction in growth compared with control cells. Morphological analysis of these cells showed they were large and pleomorphic with multiple detached flagella. Both immunofluorescence assays using organelle-specific antibodies and electron microscopic analysis showed that TbCen1-deficient cells contained multiple basal bodies, kinetoplasts, Golgi, and nuclei. These multiple organelles were, however, closely clustered together, indicating duplication without segregation in the absence of centrin. This failure in organelle segregation may be the likely cause of inhibition of cytokinesis, suggesting for the first time a new and unique role for centrin in the segregation of organelles without affecting their multiplication in the procyclic form of T. brucei.
机译:Centrin是一种钙结合型中心体/基底体相关蛋白,参与真核生物中这些细胞器的复制和分离。我们已经表明,毁灭利什曼原虫中的一个蛋白基因(centrin1)的破坏会导致基础体重复和胞质分裂失败。在这里,我们承诺定义centrin1(TbCen1)在基底体及其相关细胞器动子体和高尔基体的复制和分离中的作用,以及通过使用RNA抑制作用消耗其蛋白质而在布鲁氏锥虫的前环形式的胞质分裂中的作用。方法。与对照细胞相比,TbCen1耗尽的细胞显示出明显的生长减少。这些细胞的形态学分析显示它们大而多形,有多个分离的鞭毛。使用细胞器特异性抗体的免疫荧光分析和电子显微镜分析均显示,TbCen1缺陷型细胞包含多个基体,动塑料,高尔基体和细胞核。然而,这些多个细胞器紧密地聚集在一起,表明在没有中心蛋白的情况下重复而不分离。细胞器分离的这种失败可能是抑制胞质分裂的可能原因,这首次表明了中心蛋白在细胞器分离中的新的独特作用,而并不影响它们在布鲁氏菌的前环形式中的增殖。

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