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TPX2 levels modulate meiotic spindle size and architecture in Xenopus egg extracts

机译:TPX2水平调节非洲爪蟾卵提取物中减数分裂纺锤体的大小和结构

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摘要

The spindle segregates chromosomes in dividing eukaryotic cells, and its assembly pathway and morphology vary across organisms and cell types. We investigated mechanisms underlying differences between meiotic spindles formed in egg extracts of two frog species. Small Xenopus tropicalis spindles resisted inhibition of two factors essential for assembly of the larger Xenopus laevis spindles: RanGTP, which functions in chromatin-driven spindle assembly, and the kinesin-5 motor Eg5, which drives antiparallel microtubule (MT) sliding. This suggested a role for the MT-associated protein TPX2 (targeting factor for Xenopus kinesin-like protein 2), which is regulated by Ran and binds Eg5. Indeed, TPX2 was threefold more abundant in X. tropicalis extracts, and elevated TPX2 levels in X. laevis extracts reduced spindle length and sensitivity to Ran and Eg5 inhibition. Higher TPX2 levels recruited Eg5 to the poles, where MT density increased. We propose that TPX2 levels modulate spindle architecture through Eg5, partitioning MTs between a tiled, antiparallel array that promotes spindle expansion and a cross-linked, parallel architecture that concentrates MTs at spindle poles.
机译:纺锤体在分裂的真核​​细胞中分离染色体,并且其组装途径和形态随生物体和细胞类型的不同而不同。我们调查了两种青蛙物种卵提取物中形成的减数分裂纺锤体之间差异的潜在机制。小型非洲爪蟾纺锤体能够抵抗较大的非洲爪蟾纺锤体组装所必需的两个因素的抑制:RanGTP(在染色质驱动的纺锤体装配中发挥作用)和驱动蛋白5的Eg5(驱动反平行微管(MT)滑动)。这暗示了MT相关蛋白TPX2(非洲爪蟾驱动蛋白样蛋白2的靶向因子)的作用,该蛋白受Ran调控并结合Eg5。的确,TPX2在热带假单胞菌提取物中的含量要高出三倍,而X. laevis提取物中TPX2含量的升高则减少了纺锤体的长度以及对Ran和Eg5抑制的敏感性。较高的TPX2水平将Eg5吸收到极点,MT密度增加。我们建议TPX2级别通过Eg5调节主轴架构,在MT块之间平铺以促进主轴扩展的平铺,反平行阵列和将MT集中在主轴极点的交联并行架构。

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