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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >Local RhoA activation induces cytokinetic furrows independent of spindle position and cell cycle stage
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Local RhoA activation induces cytokinetic furrows independent of spindle position and cell cycle stage

机译:局部RHOA激活诱导与主轴位置和细胞周期阶段无关的细胞因子沟

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The GTPase RhoA promotes contractile ring assembly and furrow ingression during cytokinesis. Although many factors that regulate RhoA during cytokinesis have been characterized, the spatiotemporal regulatory logic remains undefined. We have developed an optogenetic probe to gain tight spatial and temporal control of RhoA activity in mammalian cells and demonstrate that cytokinetic furrowing is primarily regulated at the level of RhoA activation. Light-mediated recruitment of a RhoGEF domain to the plasma membrane leads to rapid induction of RhoA activity, leading to assembly of cytokinetic furrows that partially ingress. Furthermore, furrow formation in response to RhoA activation is not temporally or spatially restricted. RhoA activation is sufficient to generate furrows at both the cell equator and cell poles, in both metaphase and anaphase. Remarkably, furrow formation can be initiated in rounded interphase cells, but not adherent cells. These results indicate that RhoA activation is sufficient to induce assembly of functional contractile rings and that cell rounding facilitates furrow formation.
机译:GTPase RhoA在细胞因子期间促进收缩环组件和沟进入。虽然已经表征了在细胞因子期间调节rhOA的许多因素,但时尚调节逻辑仍未确定。我们开发了一种致硫化探针,以获得哺乳动物细胞中RhOA活性的紧密空间和时间控制,并证明细胞因子发作沟主要在RHOA活化水平下调节。光介导的RhoGEF域募集到血浆膜导致RhOA活性的快速诱导,导致细胞内沟的组装部分进入。此外,响应RHOA激活的沟槽形成在时间上不是在时间上或空间限制。在中期和后,RHOA活化足以在细胞赤道和细胞杆上产生沟槽。值得注意的是,可以在圆形的相互细胞中引发沟槽形成,但不粘附细胞。这些结果表明RhOA活化足以诱导功能性收缩环的组装,并且细胞舍入促进沟槽形成。

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