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A TACC3/ch-TOG/clathrin complex stabilises kinetochore fibres by inter-microtubule bridging

机译:TACC3 / ch-TOG / clathrin复合物通过微管间桥接来稳定线粒体纤维

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摘要

Kinetochore fibres (K-fibres) of the spindle apparatus move chromosomes during mitosis. These fibres are discrete bundles of parallel microtubules (MTs) that are crosslinked by inter-MT ‘bridges' that are thought to improve fibre stability during chromosomal movement. The identity of these bridges is unknown. Clathrin is a multimeric protein that has been shown to stabilise K-fibres during early mitosis by a mechanism independent of its role in membrane trafficking. In this study, we show that clathrin at the mitotic spindle is in a transforming acidic colied-coil protein 3 (TACC3)/colonic, hepatic tumour overexpressed gene (ch-TOG)/clathrin complex. The complex is anchored to the spindle by TACC3 and ch-TOG. Ultrastructural analysis of clathrin-depleted K-fibres revealed a selective loss of a population of short inter-MT bridges and a general loss of MTs. A similar loss of short inter-MT bridges was observed in TACC3-depleted K-fibres. Finally, immunogold labelling confirmed that inter-MT bridges in K-fibres contain clathrin. Our results suggest that the TACC3/ch-TOG/clathrin complex is an inter-MT bridge that stabilises K-fibres by physical crosslinking and by reducing rates of MT catastrophe.
机译:纺锤体的动线丝纤维(K纤维)在有丝分裂期间移动染色体。这些纤维是离散的平行微管束,它们通过MT间的“桥”交联,被认为可以改善染色体移动过程中的纤维稳定性。这些桥的身份未知。网格蛋白是一种多聚体蛋白,已显示出在有丝分裂早期可以通过独立于其在膜运输中的作用的机制来稳定K纤维。在这项研究中,我们表明网格蛋白在有丝分裂纺锤体上是在转化酸性大肠杆菌盘绕蛋白3(TACC3)/结肠,肝肿瘤过表达的基因(ch-TOG)/ clathrin复合物中。复合物通过TACC3和ch-TOG固定在主轴上。网格蛋白贫化的K纤维的超微结构分析表明,短的MT间桥之间的选择性丢失和MT的一般丢失。在贫TACC3的K纤维中观察到了类似的短MT桥间损失。最后,免疫金标记证实了K纤维中的MT间桥含有网格蛋白。我们的结果表明,TACC3 / ch-TOG / clathrin复合物是一种MT间桥,可通过物理交联和降低MT突变率来稳定K纤维。

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