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Cytoskeletal control of centrioles movement during the establishment of polarity in Madin-Darby canine kidney cells

机译:Madin-Darby犬肾细胞极性建立过程中对中心粒运动的细胞骨架控制

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摘要

The two centrioles that are localized close to each other and to the nucleus in single Madin-Darby Canine kidney cells (MDCK) move apart by distances as large as 13 microns after the establishment of extensive cellular junctions. Microfilaments, and possibly microtubules appear to be responsible for this separation. In fully polarized cells, the centrioles are localized just beneath the apical membrane. After disruption of intercellular junctions in low calcium medium, the centrioles move back towards the cell center. This process requires intact microtubules but happens even in the absence of microfilaments. These results indicate that the position of centrioles is determined by opposing forces produced by microtubules and microfilaments and suggest that the balance between these forces is modulated by the assembly of cellular junctions. Centriole separation appears to be an early event in the process that precedes their final positioning in the apical-most region of the polarized cell.
机译:建立广泛的细胞连接后,位于单个Madin-Darby犬肾细胞(MDCK)中的两个彼此靠近且位于细胞核附近的中心体移动距离最大为13微米。微丝和可能的微管似乎是造成这种分离的原因。在完全极化的细胞中,中心粒位于根尖膜的正下方。在低钙培养基中破坏细胞间连接后,中心粒移回细胞中心。该过程需要完整的微管,但即使没有微丝也会发生。这些结果表明,中心粒的位置是由微管和微丝产生的相反力决定的,并且表明这些力之间的平衡是由细胞接头的组装来调节的。在将它们最终定位在极化细胞的最顶端区域之前,离心分离似乎是该过程的早期事件。

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