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Novel Functions of Ect2 in Polar Lamellipodia Formation and Polarity Maintenance during Contractile Ring-Independent Cytokinesis in Adherent Cells

机译:Ect2在极性层状脂蛋白形成和贴壁细胞收缩环独立胞质分裂期间维持极性的新功能。

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摘要

Some mammalian cells are able to divide via both the classic contractile ring-dependent method (cytokinesis A) and a contractile ring-independent, adhesion-dependent method (cytokinesis B). Cytokinesis A is triggered by RhoA, which, in HeLa cells, is activated by the guanine nucleotide-exchange factor Ect2 localized at the central spindle and equatorial cortex. Here, we show that in HT1080 cells undergoing cytokinesis A, Ect2 does not localize in the equatorial cortex, though RhoA accumulates there. Moreover, Ect2 depletion resulted in only modest multinucleation of HT1080 cells, enabling us to establish cell lines in which Ect2 was constitutively depleted. Thus, RhoA is activated via an Ect2-independent pathway during cytokinesis A in HT1080 cells. During cytokinesis B, Ect2-depleted cells showed narrower accumulation of RhoA at the equatorial cortex, accompanied by compromised pole-to-equator polarity, formation of ectopic lamellipodia in regions where RhoA normally would be distributed, and delayed formation of polar lamellipodia. Furthermore, C3 exoenzyme inhibited equatorial RhoA activation and polar lamellipodia formation. Conversely, expression of dominant active Ect2 in interphase HT1080 cells enhanced RhoA activity and suppressed lamellipodia formation. These results suggest that equatorial Ect2 locally suppresses lamellipodia formation via RhoA activation, which indirectly contributes to restricting lamellipodia formation to polar regions during cytokinesis B.
机译:一些哺乳动物细胞能够通过经典的收缩环依赖性方法(胞质分裂A)和收缩环依赖性,粘附依赖性方法(胞质分裂B)分裂。胞质分裂A由RhoA触发,在HeLa细胞中,RhoA由位于中心纺锤和赤道皮层的鸟嘌呤核苷酸交换因子Ect2激活。在这里,我们显示在经历胞质分裂A的HT1080细胞中,尽管RhoA积累在那里,Ect2并不位于赤道皮质。此外,Ect2耗竭仅导致HT1080细胞适度的多核化,从而使我们能够建立Ect2组成型耗竭的细胞系。因此,在HT1080细胞的胞质分裂A期间,RhoA通过Ect2依赖性途径被激活。在胞质分裂B期间,Ect2耗尽的细胞在赤道皮层中显示RhoA的积累较窄,同时伴随着极-赤道极性的损害,在正常分布RhoA的区域中异位片状脂蛋白缺乏症的形成以及极性片状脂蛋白缺乏症的形成延迟。此外,C3外切酶抑制了赤道RhoA激活和极薄层纤毛形成。相反,在相间HT1080细胞中显性活性Ect2的表达增强RhoA活性并抑制片状脂蛋白形成。这些结果表明,赤道Ect2通过RhoA激活局部抑制了片状脂蛋白的形成,这间接有助于在胞质分裂B期间将片状脂蛋白的形成限制在极性区域。

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