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在培养的上皮细胞中,胞质分裂持续需要中区微管束。

Midzone microtubule bundles are continuously required for cytokinesis in cultured epithelial cells.

作者信息

Wheatley S P, Wang Y

机构信息

Cell Biology Group, Worcester Foundation for Biomedical Research, Shrewsbury, Massachusetts 01545, USA.

出版信息

J Cell Biol. 1996 Nov;135(4):981-9. doi: 10.1083/jcb.135.4.981.

Abstract

The current model of cytokinesis proposes that spindle poles and associated microtubules determine the cleavage plane, and, once the signal has been delivered to the cortex, the entire mitotic apparatus can be removed without affecting cell division. While supported by compelling data from Echinoderm embryos, recent observations suggest that the model may not be universally applicable. In this study, we have examined the relationship(s) among microtubules, chromosomes, and cleavage activity in living normal rat kidney (NRK) cells with multipolar mitotic figures. We found that cleavage activity correlated with the distribution of midzone microtubule bundles and Telophase Disc 60 protein (TD60) rather than the position of spindle poles. In addition, reduction of midzone microtubules near the cortex, by either nocodazole treatment or spontaneous reorganization in tripolar cells, caused inhibition or regression of furrowing. These results demonstrate that continuous interaction between midzone microtubule bundles and the cortex is required for successful cleavage in tissue culture cells.

摘要

当前的胞质分裂模型提出,纺锤极和相关微管决定了分裂平面,并且一旦信号传递到皮层,整个有丝分裂装置就可以被移除而不影响细胞分裂。虽然这一模型得到了来自棘皮动物胚胎的确凿数据的支持,但最近的观察结果表明该模型可能并非普遍适用。在本研究中,我们研究了具有多极有丝分裂图像的正常大鼠肾(NRK)活细胞中微管、染色体和分裂活性之间的关系。我们发现,分裂活性与中间区微管束和末期盘60蛋白(TD60)的分布相关,而非纺锤极的位置。此外,通过诺考达唑处理或三极细胞中的自发重组减少皮层附近的中间区微管,会导致沟裂的抑制或消退。这些结果表明,中间区微管束与皮层之间的持续相互作用是组织培养细胞成功分裂所必需的。

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