Kaji Noriko, Muramoto Aya, Mizuno Kensaku
Department of Biomolecular Sciences, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi 980-8578, Japan.
J Biol Chem. 2008 Feb 22;283(8):4983-92. doi: 10.1074/jbc.M708644200. Epub 2007 Dec 12.
The interaction of astral microtubules with cortical actin networks is essential for the correct orientation of the mitotic spindle; however, little is known about how the cortical actin organization is regulated during mitosis. LIM kinase-1 (LIMK1) regulates actin dynamics by phosphorylating and inactivating cofilin, an actin-depolymerizing protein. LIMK1 activity increases during mitosis. Here we show that mitotic LIMK1 activation is critical for accurate spindle orientation in mammalian cells. Knockdown of LIMK1 suppressed a mitosis-specific increase in cofilin phosphorylation and caused unusual cofilin localization in the cell cortex in metaphase, instability of cortical actin organization and astral microtubules, irregular rotation and misorientation of the spindle, and a delay in anaphase onset. Similar results were obtained by treating the cells with a LIMK1 in hibitor peptide or latrunculin A or by overexpressing a non-phosphorylatable cofilin(S3A) mutant. Furthermore, localization of LGN (a protein containing the repetitive Leu-Gly-Asn tripeptide motifs), an important regulator of spindle orientation, in the crescent-shaped cortical regions was perturbed in LIMK1 knockdown cells. Our results suggest that LIMK1-mediated cofilin phosphorylation is required for accurate spindle orientation by stabilizing cortical actin networks during mitosis.
星体微管与皮质肌动蛋白网络的相互作用对于有丝分裂纺锤体的正确定向至关重要;然而,关于有丝分裂期间皮质肌动蛋白组织是如何被调控的,人们知之甚少。LIM激酶-1(LIMK1)通过磷酸化并使丝切蛋白(一种肌动蛋白解聚蛋白)失活来调节肌动蛋白动力学。LIMK1的活性在有丝分裂期间增加。在此我们表明,有丝分裂期间LIMK1的激活对于哺乳动物细胞中纺锤体的精确定向至关重要。敲低LIMK1可抑制丝切蛋白磷酸化的有丝分裂特异性增加,并导致中期细胞皮质中丝切蛋白出现异常定位、皮质肌动蛋白组织和星体微管不稳定、纺锤体不规则旋转和定向错误以及后期起始延迟。用LIMK1抑制肽或Latrunculin A处理细胞,或过表达不可磷酸化的丝切蛋白(S3A)突变体,也得到了类似结果。此外,在敲低LIMK1的细胞中,纺锤体定向的重要调节因子LGN(一种含有重复亮氨酸-甘氨酸-天冬酰胺三肽基序的蛋白质)在新月形皮质区域的定位受到干扰。我们的结果表明,LIMK1介导的丝切蛋白磷酸化通过在有丝分裂期间稳定皮质肌动蛋白网络,对于纺锤体的精确定向是必需的。