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核孔蛋白转位启动子区域(Tpr)与动力蛋白复合物结合,防止有丝分裂过程中染色体滞后的形成。

Nucleoporin translocated promoter region (Tpr) associates with dynein complex, preventing chromosome lagging formation during mitosis.

机构信息

Frontier Science Organization and Cancer Research Institute, Kanazawa University, Kakuma-machi, Kanazawa, Ishikawa 920-1192, Japan.

出版信息

J Biol Chem. 2010 Apr 2;285(14):10841-9. doi: 10.1074/jbc.M110.105890. Epub 2010 Feb 4.

Abstract

Gain or loss of whole chromosomes is often observed in cancer cells and is thought to be due to aberrant chromosome segregation during mitosis. Proper chromosome segregation depends on a faithful interaction between spindle microtubules and kinetochores. Several components of the nuclear pore complex/nucleoporins play critical roles in orchestrating the rapid remodeling events that occur during mitosis. Our recent studies revealed that the nucleoporin, Rae1, plays critical roles in maintaining spindle bipolarity. Here, we show association of another nucleoporin, termed Tpr (translocated promoter region), with the molecular motors dynein and dynactin, which both orchestrate with the spindle checkpoints Mad1 and Mad2 during cell division. Overexpression of Tpr enhanced multinucleated cell formation. RNA interference-mediated knockdown of Tpr caused a severe lagging chromosome phenotype and disrupted spindle checkpoint proteins expression and localization. Next, we performed a series of rescue and dominant negative experiments to confirm that Tpr orchestrates proper chromosome segregation through interaction with dynein light chain. Our data indicate that Tpr functions as a spatial and temporal regulator of spindle checkpoints, ensuring the efficient recruitment of checkpoint proteins to the molecular motor dynein to promote proper anaphase formation.

摘要

整条染色体的获得或丢失在癌细胞中经常观察到,据认为这是由于有丝分裂过程中染色体分离异常所致。正确的染色体分离取决于纺锤体微管和动粒之间的忠实相互作用。核孔复合物/核孔蛋白的几个成分在协调有丝分裂过程中发生的快速重塑事件中发挥着关键作用。我们最近的研究表明,核孔蛋白 Rae1 在维持纺锤体双极性方面起着关键作用。在这里,我们显示另一种核孔蛋白,称为 Tpr(易位启动子区域),与分子马达 dynein 和 dynactin 相关联,这两者在细胞分裂过程中与纺锤体检查点 Mad1 和 Mad2 协同作用。Tpr 的过表达增强了多核细胞的形成。RNA 干扰介导的 Tpr 敲低导致染色体滞后表型严重,并破坏纺锤体检查点蛋白的表达和定位。接下来,我们进行了一系列的挽救和显性负实验,以确认 Tpr 通过与 dynein 轻链相互作用来协调正确的染色体分离。我们的数据表明,Tpr 作为纺锤体检查点的时空调节剂发挥作用,确保检查点蛋白有效地募集到分子马达 dynein 上,以促进适当的后期形成。

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