Kaji Noriko, Ohashi Kazumasa, Shuin Mika, Niwa Ryusuke, Uemura Tadashi, Mizuno Kensaku
Department of Biomolecular Sciences, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi 980-8578, Japan.
J Biol Chem. 2003 Aug 29;278(35):33450-5. doi: 10.1074/jbc.M305802200. Epub 2003 Jun 14.
During cytokinesis the actomyosin-based contractile ring is formed at the equator, constricted, and then disassembled prior to cell abscission. Cofilin stimulates actin filament disassembly and is implicated in the regulation of contractile ring dynamics. However, little is known about the mechanism controlling cofilin activity during cytokinesis. Cofilin is inactivated by phosphorylation on Ser-3 by LIM-kinase-1 (LIMK1) and is reactivated by a protein phosphatase Slingshot-1 (SSH1). Here we show that the phosphatase activity of SSH1 decreases in the early stages of mitosis and is elevated in telophase and cytokinesis in HeLa cells, a time course correlating with that of cofilin dephosphorylation. SSH1 co-localizes with F-actin and accumulates onto the cleavage furrow and the midbody. Expression of a phosphatase-inactive SSH1 induces aberrant accumulation of F-actin and phospho-cofilin near the midbody in the final stage of cytokinesis and frequently leads to the regression of the cleavage furrow and the formation of multinucleate cells. Co-expression of cofilin rescued the inhibitory effect of phosphatase-inactive SSH1 on cytokinesis. These results suggest that SSH1 plays a critical role in cytokinesis by dephosphorylating and reactivating cofilin in later stages of mitosis.
在胞质分裂过程中,基于肌动球蛋白的收缩环在赤道面形成,收缩,然后在细胞脱离之前解体。丝切蛋白刺激肌动蛋白丝解聚,并参与收缩环动力学的调节。然而,关于胞质分裂过程中控制丝切蛋白活性的机制知之甚少。丝切蛋白通过LIM激酶1(LIMK1)在丝氨酸3位点磷酸化而失活,并通过蛋白磷酸酶弹弓1(SSH1)重新激活。在这里,我们表明SSH1的磷酸酶活性在有丝分裂早期降低,在HeLa细胞的末期和胞质分裂期升高,这一时期与丝切蛋白去磷酸化的时间进程相关。SSH1与F-肌动蛋白共定位,并在分裂沟和中间体上积累。磷酸酶失活的SSH1的表达在胞质分裂末期诱导F-肌动蛋白和磷酸化丝切蛋白在中间体附近异常积累,并经常导致分裂沟退缩和多核细胞形成。共表达丝切蛋白可挽救磷酸酶失活的SSH1对胞质分裂的抑制作用。这些结果表明,SSH1通过在有丝分裂后期使丝切蛋白去磷酸化并重新激活丝切蛋白,在胞质分裂中起关键作用。