Department of Biological Sciences, University of Ulsan, Ulsan 680-749, Republic of Korea.
Metainflammation Research Center, University of Ulsan, Ulsan 680-749, Republic of Korea.
Biochim Biophys Acta Mol Cell Res. 2019 Sep;1866(9):1463-1474. doi: 10.1016/j.bbamcr.2019.06.003. Epub 2019 Jun 11.
The perinuclear stacks of the Golgi apparatus maintained by dynamic microtubules are essential for cell migration. Activation of Akt (protein kinase B, PKB) negatively regulates glycogen synthase kinase 3β (GSK3β)-mediated tau phosphorylation, which enhances tau binding to microtubules and microtubule stability. In this study, experiments were performed on developmentally regulated GTP-binding protein 2 (DRG2)-stably knockdown HeLa cells to determine whether knockdown of DRG2 in HeLa cells treated with epidermal growth factor (EGF) affects microtubule dynamics, perinuclear Golgi stacking, and cell migration. Here, we show that DRG2 plays a key role in regulating microtubule stability, perinuclear Golgi stack formation, and cell migration. DRG2 knockdown prolonged the EGF receptor (EGFR) localization in endosome, enhanced Akt activity and inhibitory phosphorylation of GSK3β. Tau, a target of GSK3β, was hypo-phosphorylated in DRG2-knockdown cells and showed greater association with microtubules, resulting in microtubule stabilization. DRG2-knockdown cells showed defects in microtubule growth and microtubule organizing centers (MTOC), Golgi fragmentation, and loss of directional cell migration. These results reveal a previously unappreciated role for DRG2 in the regulation of perinuclear Golgi stacking and cell migration via its effects on GSK3β phosphorylation, and microtubule stability.
高尔基器核周堆叠体由动态微管维持,这对于细胞迁移是必不可少的。Akt(蛋白激酶 B,PKB)的激活负调控糖原合酶激酶 3β(GSK3β)介导的 tau 磷酸化,从而增强 tau 与微管的结合以及微管的稳定性。在这项研究中,在发育调控 GTP 结合蛋白 2(DRG2)稳定敲低的 HeLa 细胞上进行了实验,以确定 HeLa 细胞中 DRG2 的敲低是否会影响表皮生长因子(EGF)处理的 HeLa 细胞中的微管动力学、核周高尔基堆叠和细胞迁移。在这里,我们表明 DRG2 在调节微管稳定性、核周高尔基堆叠形成和细胞迁移方面起着关键作用。DRG2 敲低延长了 EGF 受体(EGFR)在内涵体中的定位,增强了 Akt 活性和 GSK3β 的抑制性磷酸化。GSK3β 的靶标 tau 在 DRG2 敲低细胞中呈低磷酸化状态,与微管的结合增加,导致微管稳定。DRG2 敲低细胞表现出微管生长和微管组织中心(MTOC)缺陷、高尔基体碎片化以及失去定向细胞迁移。这些结果揭示了 DRG2 通过其对 GSK3β 磷酸化和微管稳定性的影响,在调节核周高尔基堆叠和细胞迁移方面的先前未被认识到的作用。