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Basal body movements orchestrate membrane organelle division and cell morphogenesis in Trypanosoma brucei

机译:布氏锥虫的基础身体运动协调膜细胞器分裂和细胞形态发生

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摘要

The defined shape and single-copy organelles of Trypanosoma brucei mean that it provides an excellent model in which to study how duplication and segregation of organelles is interfaced with morphogenesis of overall cell shape and form. The centriole or basal body of eukaryotic cells is often seen to be at the centre of such processes. We have used a combination of electron microscopy and electron tomography techniques to provide a detailed three-dimensional view of duplication of the basal body in trypanosomes. We show that the basal body duplication and maturation cycle exerts an influence on the intimately associated flagellar pocket membrane system that is the portal for secretion and uptake from this cell. At the start of the cell cycle, a probasal body is positioned anterior to the basal body of the existing flagellum. At the G1–S transition, the probasal body matures, elongates and invades the pre-existing flagellar pocket to form the new flagellar axoneme. The new basal body undergoes a spectacular anti-clockwise rotation around the old flagellum, while its short new axoneme is associated with the pre-existing flagellar pocket. This rotation and subsequent posterior movements results in division of the flagellar pocket and ultimately sets parameters for subsequent daughter cell morphogenesis.
机译:布鲁氏锥虫的定义形状和单拷贝细胞器意味着它提供了一个极好的模型,用于研究细胞器的复制和分离如何与整体细胞形状和形式的形态发生有关。真核细胞的中心或基体通常被认为是这种过程的中心。我们已经结合使用电子显微镜和电子断层扫描技术来提供锥虫体基体复制的详细三维视图。我们表明,基础身体的复制和成熟周期对紧密相关的鞭毛袋膜系统发挥了影响,该系统是从该细胞分泌和摄取的门户。在细胞周期开始时,将一个基体置于现有鞭毛基体的前面。在G1–S过渡期,前基体成熟,伸长并侵入先前存在的鞭毛袋,形成新的鞭毛轴突。新的基体围绕旧的鞭毛逆时针旋转,而新的短轴突与先前存在的鞭毛袋相关。这种旋转和随后的后移导致鞭毛袋的分裂,并最终为随后的子代细胞形态发生设定参数。

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