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缢缩蛋白与微管相互作用,并且是界定皮质区域的星体通路的一部分。

Anillin interacts with microtubules and is part of the astral pathway that defines cortical domains.

作者信息

van Oostende Triplet Chloe, Jaramillo Garcia Melina, Haji Bik Husni, Beaudet Daniel, Piekny Alisa

机构信息

Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada.

Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada

出版信息

J Cell Sci. 2014 Sep 1;127(Pt 17):3699-710. doi: 10.1242/jcs.147504. Epub 2014 Jul 2.

Abstract

Cytokinesis occurs by the ingression of an actomyosin ring that separates the cell into two daughter cells. The mitotic spindle, comprising astral and central spindle microtubules, couples contractile ring ingression with DNA segregation. Cues from the central spindle activate RhoA, the upstream regulator of the contractile ring. However, additional cues from the astral microtubules also reinforce the localization of active RhoA. Using human cells, we show that astral and central spindle microtubules independently control the localization of contractile proteins during cytokinesis. Astral microtubules restrict the accumulation and localization of contractile proteins during mitosis, whereas the central spindle forms a discrete ring by directing RhoA activation in the equatorial plane. Anillin stabilizes the contractile ring during cytokinesis. We show that human anillin interacts with astral microtubules and that this interaction is competed by the cortical recruitment of anillin by active RhoA. Anillin restricts the localization of myosin to the equatorial cortex and that of NuMA (part of the microtubule-tethering complex that regulates spindle position) to the polar cortex. The sequestration of anillin by astral microtubules might alter the organization of cortical proteins to polarize cells for cytokinesis.

摘要

胞质分裂通过肌动球蛋白环的内陷发生,该环将细胞分成两个子细胞。有丝分裂纺锤体由星体微管和中央纺锤体微管组成,它将收缩环的内陷与DNA分离联系起来。来自中央纺锤体的信号激活RhoA,即收缩环的上游调节因子。然而,来自星体微管的其他信号也会加强活性RhoA的定位。利用人类细胞,我们发现星体微管和中央纺锤体微管在胞质分裂过程中独立控制收缩蛋白的定位。在有丝分裂期间,星体微管限制收缩蛋白的积累和定位,而中央纺锤体通过在赤道平面引导RhoA激活形成一个离散的环。Anillin在胞质分裂期间稳定收缩环。我们发现人类Anillin与星体微管相互作用,并且这种相互作用被活性RhoA对Anillin的皮质募集所竞争。Anillin将肌球蛋白的定位限制在赤道皮质,将NuMA(调节纺锤体位置的微管系链复合体的一部分)的定位限制在极皮质。星体微管对Anillin的隔离可能会改变皮质蛋白的组织,使细胞极化以进行胞质分裂。

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