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Role of citron kinase as a target of the small GTPase Rho in cytokinesis.

机译:柚子激酶作为小GTPase Rho的靶标在胞质分裂中的作用。

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During mitosis, a ring containing actin and myosin appears beneath the equatorial surface of animal cells. This ring then contracts, forms a cleavage furrow and divides the cell, a step known as cytokinesis. The two daughter cells often remain connected by an intercellular bridge which contains a refringent structure known as the midbody. How the appearance of this ring is regulated is unclear, although the small GTPase Rho, which controls the formation of actin structures, is known to be essential. Protein kinases are also thought to participate in cytokinesis. We now show that a splice variant of a Rho target protein, named citron, contains a protein kinase domain that is related to the Rho-associated kinases ROCK14 and ROK, which regulate myosin-based contractility. Citron kinase localizes to the cleavage furrow and midbody of HeLa cells; Rho is also localized in the midbody. We find that overexpression of citron mutants results in the production of multinucleate cells and that a kinase-active mutant causes abnormal contraction during cytokinesis. We propose that citron kinase regulates cytokinesis at a step after Rho in the contractile process.
机译:在有丝分裂期间,包含肌动蛋白和肌球蛋白的环出现在动物细胞的赤道表面下方。然后,该环收缩,形成切割沟并分裂细胞,这一步骤称为胞质分裂。两个子细胞通常通过细胞间桥保持连接,该细胞间桥包含称为中体的折射结构。尽管已知控制肌动蛋白结构形成的小GTPase Rho是必不可少的,但如何调节该环的外观尚不清楚。蛋白激酶也被认为参与胞质分裂。我们现在显示,Rho目标蛋白的剪接变体,名为citron,包含与Rho相关激酶ROCK14和ROK相关的蛋白激酶域,后者调节基于肌球蛋白的收缩力。柚子激酶定位于HeLa细胞的分裂沟和中体; Rho也位于中体。我们发现,柚子突变体的过表达导致多核细胞的产生,并且激酶活性突变体在胞质分裂过程中引起异常收缩。我们建议柚子激酶调节Rho在收缩过程后一步的胞质分裂。

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