首页> 外文期刊>Molecular biology of the cell >Rootletin interacts with C-Nap1 and may function as a physical linker between the pair of centrioles/basal bodies in cells
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Rootletin interacts with C-Nap1 and may function as a physical linker between the pair of centrioles/basal bodies in cells

机译:Rootletin与C-Nap1相互作用,并可能充当细胞中一对中心粒/基体之间的物理连接子

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摘要

Rootletin, a major structural component of the ciliary rootlet, is located at the basal bodies and centrosomes in ciliated and nonciliated cells, respectively. Here we investigated its potential role in the linkage of basal bodies/centrioles and the mechanism involved in such linkages. We show that rootletin interacts with C-Nap1, a protein restricted at the ends of centrioles and functioning in centrosome cohesion in interphase cells. Their interaction in vivo is supported by their colocalization at the basal bodies/centrioles and coordinated association with the centrioles during the cell cycle. Ultrastructural examinations demonstrate that rootletin fibers connect the basal bodies in ciliated cells and are present both at the ends of and in between the pair of centrioles in nonciliated cells. The latter finding stands in contrast with C-Nap1, which is present only at the ends of the centrioles. Transient expression of C-Nap1 fragments dissociated rootletin fibers from the centrioles, resulting in centrosome separation in interphase. Overexpression of rootletin in cells caused multinucleation, micronucleation, and irregularity of nuclear shape and size, indicative of defects in chromosome separation. These data suggest that rootletin may function as a physical linker between the pair of basal bodies/centrioles by binding to C-Nap1.
机译:睫毛根的主要结构成分Rootletin分别位于纤毛和非纤毛细胞的基体和中心体中。在这里,我们研究了其在基体/中心体之间的联系中的潜在作用以及这种联系所涉及的机制。我们显示,rootletin与C-Nap1相互作用,C-Nap1是一种限制在中心粒末端并在间期细胞中的中心体凝聚力中起作用的蛋白质。它们在体内的相互作用由它们在基体/中心体中的共定位以及在细胞周期中与中心体的协同结合所支持。超微结构检查表明,rootletin纤维连接纤毛细胞中的基体,并存在于非纤毛细胞中一对中心粒的末端和中间。后一发现与仅存在于中心粒末端的C-Nap1相反。 C-Nap1片段的瞬时表达从中心粒解离了rootletin纤维,导致相间中心体分离。细胞中rootletin的过表达引起多核化,微核化以及核形状和大小的不规则,这表明染色体分离存在缺陷。这些数据表明,rootletin可以通过与C-Nap1结合而充当一对基体/中心体之间的物理连接子。

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