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两种机制协调着染色体乘客复合物向细胞分裂平面的募集。

Two mechanisms coordinate the recruitment of the chromosomal passenger complex to the plane of cell division.

机构信息

Department of Cell and Developmental Biology, Vanderbilt University Medical Center, Nashville, TN 37232.

Department of Biology, University of Pennsylvania, Philadelphia, PA 19104.

出版信息

Mol Biol Cell. 2017 Dec 1;28(25):3634-3646. doi: 10.1091/mbc.E17-06-0399. Epub 2017 Sep 27.

Abstract

During cytokinesis, the chromosomal passenger complex (CPC) promotes midzone organization, specifies the cleavage plane, and regulates furrow contractility. The localizations of the CPC are coupled to its cytokinetic functions. At the metaphase-to-anaphase transition, the CPC dissociates from centromeres and localizes to midzone microtubules and the equatorial cortex. CPC relocalization to the cell middle is thought to depend on MKlp2-driven, plus end-directed transport. In support of this idea, MKlp2 depletion impairs cytokinesis; however, cytokinesis failure stems from furrow regression rather than failed initiation of furrowing. This suggests that an alternative mechanism(s) may concentrate the CPC at the division plane. We show here that direct actin binding, via the inner centromere protein (INCENP), enhances CPC enrichment at the equatorial cortex, thus acting in tandem with MKlp2. INCENP overexpression rescues furrowing in MKlp2-depleted cells in an INCENP-actin binding-dependent manner. Using live-cell imaging, we also find that MKlp2-dependent targeting of the CPC is biphasic. MKlp2 targets the CPC to the anti-parallel microtubule overlap of the midzone, after which the MKlp2-CPC complex moves in a nondirected manner. Collectively, our work suggests that both actin binding and MKlp2-dependent midzone targeting cooperate to precisely position the CPC during mitotic exit, and that these pathways converge to ensure successful cleavage furrow ingression.

摘要

在胞质分裂过程中,染色体乘客复合物(CPC)促进了中体的组织、特化了分裂面,并调节了沟道的收缩性。CPC 的定位与其细胞分裂功能相偶联。在中期到后期的转变过程中,CPC 从着丝粒上解离,并定位于中体微管和赤道皮层。CPC 向细胞中部的重新定位被认为依赖于 MKlp2 驱动的、正向端指向的运输。支持这一观点的是,MKlp2 的缺失会损害胞质分裂;然而,胞质分裂的失败源于沟道的退化,而不是沟道起始的失败。这表明可能存在替代机制将 CPC 集中在分裂平面上。我们在这里表明,通过着丝粒内蛋白(INCENP)的直接肌动蛋白结合,增强了 CPC 在赤道皮层的富集,从而与 MKlp2 协同作用。INCENP 的过表达以依赖 INCENP-肌动蛋白结合的方式挽救了 MKlp2 缺失细胞的沟道形成。通过活细胞成像,我们还发现 MKlp2 依赖性 CPC 靶向是双相的。MKlp2 将 CPC 靶向到中体的反平行微管重叠处,之后 MKlp2-CPC 复合物以无定向的方式移动。总之,我们的工作表明,肌动蛋白结合和 MKlp2 依赖性的中体靶向都有助于在有丝分裂末期精确定位 CPC,并且这些途径汇聚在一起以确保成功的分裂沟道形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7da7/5706991/e434ca1c8fd3/3634fig1.jpg

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