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Overexpressed TPX2 causes ectopic formation of microtubular arrays in the nuclei of acentrosomal plant cells

机译:TPX2的过表达导致在人参体植物细胞核中微管阵列的异位形成

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摘要

TPX2 performs multiple roles in microtubule organization. Previously, it was shown that plant AtTPX2 binds AtAurora1 kinase and colocalizes with microtubules in a cell cycle-specific manner. To elucidate the function of TPX2 further, this work analysed Arabidopsis cells overexpressing AtTPX2-GFP. Distinct arrays of bundled microtubules, decorated with AtTPX2-GFP, were formed in the vicinity of the nuclear envelope and in the nuclei of overexpressing cells. The microtubular arrays showed reduced sensitivity to anti-microtubular drugs. TPX2-mediated formation of nuclear/perinuclear microtubular arrays was not specific for the transition to mitosis and occurred independently of Aurora kinase. The fibres were not observed in cells with detectable programmed cell death and, in this respect, they differed from TPX2-dependent microtubular assemblies functioning in mammalian apoptosis. Colocalization and co-purification data confirmed the interaction of importin with AtTPX2-GFP. In cells with nuclear foci of overexpressed AtTPX2-GFP, strong nuclear signals for Ran and importin diminished when microtubular arrays were assembled. This observation suggests that TPX2-mediated microtubule formation might be triggered by a Ran cycle. Collectively, the data suggest that in the acentrosomal plant cell, in conjunction with importin, overexpressed AtTPX2 reinforces microtubule formation in the vicinity of chromatin and the nuclear envelope.
机译:TPX2在微管组织中扮演多个角色。以前,已经证明植物AtTPX2以细胞周期特异性方式结合AtAurora1激酶并与微管共定位。为了进一步阐明TPX2的功能,这项工作分析了过表达AtTPX2-GFP的拟南芥细胞。分别用AtTPX2-GFP装饰的束状微管的不同阵列形成在核被膜附近和过表达细胞核中。微管阵列显示出对抗微管药物的敏感性降低。 TPX2介导的核/核微管阵列的形成对于向有丝分裂的过渡不是特异性的,并且独立于Aurora激酶而发生。在具有可检测的程序性细胞死亡的细胞中未观察到纤维,就此而言,它们不同于在哺乳动物细胞凋亡中起作用的依赖TPX2的微管组装。共定位和共纯化数据证实了importin与AtTPX2-GFP的相互作用。在具有过表达的AtTPX2-GFP的核灶的细胞中,组装微管阵列时,Ran和importin的强核信号减弱。该观察表明,TPX2介导的微管形成可能是由R​​an循环触发的。总体而言,数据表明在人染色体的植物细胞中,与importin结合,过表达的AtTPX2增强了染色质和核包膜附近的微管形成。

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