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Spindle Assembly in the Absence of a RanGTP Gradient Requires Localized CPC Activity

机译:缺少RanGTP梯度的主轴装配需要局部CPC活动

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摘要

During animal cell division, a gradient of GTP-bound Ran is generated around mitotic chromatin [1, 2]. It is generally accepted that this RanGTP gradient is essential for organizing the spindle, because it locally activates critical spindle assembly factors [3-5]. Here, we show in Xenopus laevis egg extract, where the gradient is best characterized, that spindles can assemble in the absence of a RanGTP gradient. Gradient-free spindle assembly occurred around sperm nuclei but not around chromatin-coated beads and required the chromosomal passenger complex (CPC). Artificial enrichment of CPC activity within hybrid bead arrays containing both immobilized chromatin and the CPC supported local microtubule assembly even in the absence of a RanGTP gradient. We conclude that RanGTP and the CPC constitute the two major molecular signals that spatially promote microtubule polymerization around chromatin. Furthermore, we hypothesize that the two signals mainly originate from discreet physical sites on the chromosomes to localize microtubule assembly around chromatin: a RanGTP signal from any chromatin and a CPC-dependent signal predominantly generated from centromeric chromatin.
机译:在动物细胞分裂过程中,有丝分裂染色质周围会生成GTP结合的Ran的梯度[1、2]。人们普遍认为,RanGTP梯度对于组织主轴至关重要,因为它会局部激活关键的主轴装配系数[3-5]。在这里,我们展示了非洲爪蟾卵提取物,其中梯度最能体现特征,纺锤体可以在没有RanGTP梯度的情况下组装。无梯度纺锤体大会发生在精子细胞核周围,而不是染色质涂层的珠子周围,并需要染色体乘客复合体(CPC)。在不包含RanGTP梯度的情况下,包含固定染色质和CPC的混合珠阵列中人工丰富CPC活性可支持局部微管装配。我们得出结论,RanGTP和CPC构成了空间上促进染色质周围微管聚合的两个主要分子信号。此外,我们假设这两个信号主要来自染色体上离散的物理位点,以在染色质周围定位微管装配:来自任何染色质的RanGTP信号和主要由着丝粒染色质产生的CPC依赖性信号。

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