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动力蛋白-6 KIF20B 对于人细胞中有效的胞质分裂沟形成和适时的分裂期结束是必需的。

Kinesin-6 KIF20B is required for efficient cytokinetic furrowing and timely abscission in human cells.

机构信息

Department of Cell Biology, University of Virginia School of Medicine, Charlottesville, VA 22908.

Department of Cell Biology, University of Virginia School of Medicine, Charlottesville, VA 22908

出版信息

Mol Biol Cell. 2018 Jan 15;29(2):166-179. doi: 10.1091/mbc.E17-08-0495. Epub 2017 Nov 22.

Abstract

Cytokinesis requires the cooperation of many cytoskeletal and membrane regulators. Most of the major players required for cytokinesis are known, but the temporal regulation and adaptations for different cell types are less understood. KIF20B (previously called MPHOSPH1 or MPP1) is a member of the Kinesin-6 family, which also includes the better-known members KIF23/MKLP1 and KIF20A/MKLP2. Previously, we showed that mouse Kif20b is involved in cerebral cortex growth and midbody organization of neural stem cells. Here, using siRNA-mediated knockdown of KIF20B in a human cell line and fixed and live imaging, we show that KIF20B has a cell-autonomous role in cytokinesis. KIF20B depletion affects the speed of both furrow ingression and abscission. It localizes to microtubules of the central spindle and midbody throughout cytokinesis, at sites distinct from the other Kinesin-6 family members. KIF20B is not required for midbody assembly, but may accelerate or coordinate midbody maturation. In particular, KIF20B appears to regulate late steps of maturation including anillin dispersal, ESCRT-III recruitment, and the formation of microtubule constriction sites.

摘要

有丝分裂需要许多细胞骨架和膜调节剂的共同作用。大多数有丝分裂所需的主要参与者都已被发现,但不同细胞类型的时间调节和适应仍知之甚少。KIF20B(以前称为 MPHOSPH1 或 MPP1)是驱动蛋白-6 家族的成员,该家族还包括更为人熟知的成员 KIF23/MKLP1 和 KIF20A/MKLP2。此前,我们发现小鼠 Kif20b 参与大脑皮层的生长和神经干细胞的中期体组织。在这里,我们使用人细胞系中的 siRNA 介导的 KIF20B 敲低和固定及活细胞成像,表明 KIF20B 在有丝分裂中具有细胞自主作用。KIF20B 的耗竭会影响沟道内陷和分离的速度。它在整个有丝分裂过程中定位于中心纺锤体和中期体的微管上,与其他驱动蛋白-6 家族成员的位置不同。KIF20B 不是中期体组装所必需的,但可能会加速或协调中期体的成熟。特别是,KIF20B 似乎调节成熟的后期步骤,包括肌动蛋白分散、ESCRT-III 募集和微管收缩部位的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fac/5909929/fcc0333d3424/mbc-29-166-g001.jpg

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