Santra Manoranjan, Santra Sutapa, Roberts Cindi, Zhang Rui Lan, Chopp Michael
Department of Neurology, Henry Ford Health System, Detroit, Michigan, USA.
J Neurochem. 2009 Jan;108(1):231-45. doi: 10.1111/j.1471-4159.2008.05758.x.
Doublecortin (DCX) is a microtubule (MT) binding protein that induces growth arrest at the G2-M phase of cell cycle in glioma and suppresses tumor xenograft in immunocompromised hosts. DCX expression was found in neuronal cells, but lacking in glioma cells. We tested the hypothesis that DCX inhibits glioma U87 cell mitosis and invasion. Our data showed that DCX synthesizing U87 cells underwent mitotic MT spindle catastrophe in a neurabin II dependent pathway. Synthesis of both DCX and neurabin II were required to induce apoptosis in U87 and human embryonic kidney 293T cells. In DCX expressing U87 cells, association of phosphorylated DCX with protein phosphatase-1 (PP1) in the cytosol disrupted the interaction between kinesin-13 and PP1 in the nucleus and yielded spontaneously active kinesin-13. The activated kinesin-13 caused mitotic MT catastrophe in spindle checkpoint. Phosphorylated-DCX induced depolymerization of actin filaments in U87 cells, down-regulated matrix metalloproteinases-2 and -9, and inhibited glioma U87 cell invasion in a neurabin II dependent pathway. Thus, localization of the DCX-neurabin II-PP1 complex in the cytosol of U87 tumor cells inhibited PP1 phosphatase activities leading to anti-glioma effects via (1) mitotic MT spindle catastrophe that blocks mitosis and (2) depolymerization of actin that inhibits glioma cell invasion.
双皮质素(DCX)是一种微管(MT)结合蛋白,可诱导胶质瘤细胞周期在G2-M期生长停滞,并抑制免疫缺陷宿主中的肿瘤异种移植。DCX表达见于神经元细胞,但在胶质瘤细胞中缺乏。我们检验了DCX抑制胶质瘤U87细胞有丝分裂和侵袭的假说。我们的数据表明,合成DCX的U87细胞在一种依赖神经肌动蛋白II的途径中经历有丝分裂微管纺锤体灾难。DCX和神经肌动蛋白II的合成都是诱导U87和人胚肾293T细胞凋亡所必需的。在表达DCX的U87细胞中,细胞质中磷酸化的DCX与蛋白磷酸酶-1(PP1)的结合破坏了细胞核中驱动蛋白-13与PP1之间的相互作用,并产生自发激活的驱动蛋白-13。激活的驱动蛋白-13在纺锤体检查点引起有丝分裂微管灾难。磷酸化的DCX诱导U87细胞中肌动蛋白丝解聚,下调基质金属蛋白酶-2和-9,并在一种依赖神经肌动蛋白II的途径中抑制胶质瘤U87细胞侵袭。因此,U87肿瘤细胞胞质中DCX-神经肌动蛋白II-PP1复合物的定位抑制了PP1磷酸酶活性,通过(1)阻断有丝分裂的有丝分裂微管纺锤体灾难和(2)抑制胶质瘤细胞侵袭的肌动蛋白解聚导致抗胶质瘤作用。