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PLK1 在胞质分裂过程中对中心纺锤体的调节中发挥双重作用。

PLK1 plays dual roles in centralspindlin regulation during cytokinesis.

机构信息

Oncode Institute, University Medical Center Utrecht, Utrecht University, Utrecht, Netherlands.

Center for Molecular Medicine, University Medical Center Utrecht, Utrecht University, Utrecht, Netherlands.

出版信息

J Cell Biol. 2019 Apr 1;218(4):1250-1264. doi: 10.1083/jcb.201805036. Epub 2019 Feb 6.

Abstract

Cytokinesis begins upon anaphase onset. An early step involves local activation of the small GTPase RhoA, which triggers assembly of an actomyosin-based contractile ring at the equatorial cortex. Here, we delineated the contributions of PLK1 and Aurora B to RhoA activation and cytokinesis initiation in human cells. Knock-down of PRC1, which disrupts the spindle midzone, revealed the existence of two pathways that can initiate cleavage furrow ingression. One pathway depends on a well-organized spindle midzone and PLK1, while the other depends on Aurora B activity and centralspindlin at the equatorial cortex and can operate independently of PLK1. We further show that PLK1 inhibition sequesters centralspindlin onto the spindle midzone, making it unavailable for Aurora B at the equatorial cortex. We propose that PLK1 activity promotes the release of centralspindlin from the spindle midzone through inhibition of PRC1, allowing centralspindlin to function as a regulator of spindle midzone formation and as an activator of RhoA at the equatorial cortex.

摘要

有丝分裂始于后期起始。早期步骤涉及小 GTPase RhoA 的局部激活,这触发了赤道皮质处肌动球蛋白为基础的收缩环的组装。在这里,我们描述了 PLK1 和 Aurora B 对 RhoA 激活和人类细胞胞质分裂起始的贡献。破坏纺锤体中部的 PRC1 的敲低揭示了可以启动分裂沟内陷的两条途径。一条途径依赖于组织良好的纺锤体中部和 PLK1,而另一条途径依赖于赤道皮质处的 Aurora B 活性和中心纺锤体,并且可以独立于 PLK1 运作。我们进一步表明,PLK1 抑制将中心纺锤体隔离在纺锤体中部,使其无法在赤道皮质处被 Aurora B 利用。我们提出,PLK1 活性通过抑制 PRC1 促进中心纺锤体从纺锤体中部释放,从而使中心纺锤体能够作为纺锤体中部形成的调节剂,并作为赤道皮质处 RhoA 的激活剂发挥作用。

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