Kim Sun Young, Han Yong-Mahn, Oh Mihee, Kim Won-Kon, Oh Kyoung-Jin, Lee Sang Chul, Bae Kwang-Hee, Han Baek-Soo
1 Department of Biological Sciences, Center for Stem Cell Differentiation, KAIST , Daejeon, Republic of Korea.
Stem Cells Dev. 2015 Mar 15;24(6):686-700. doi: 10.1089/scd.2014.0434. Epub 2014 Dec 23.
Protein tyrosine phosphatases have been recognized as critical components of multiple signaling regulators of fundamental cellular processes, including differentiation, cell death, and migration. In this study, we show that dual specificity phosphatase 4 (DUSP4) is crucial for neuronal differentiation and functions in the neurogenesis of embryonic stem cells (ESCs). The endogenous mRNA and protein expression levels of DUSP4 gradually increased during mouse development from ESCs to postnatal stages. Neurite outgrowth and the expression of neuron-specific markers were markedly reduced by genetic ablation of DUSP4 in differentiated neurons, and these effects were rescued by the reintroduction of DUSP4. In addition, DUSP4 knockdown dramatically enhanced extracellular signal-regulated kinase (ERK) activation during neuronal differentiation. Furthermore, the DUSP4-ERK pathway functioned to balance calcium signaling, not only by regulating Ca(2+)/calmodulin-dependent kinase I phosphorylation, but also by facilitating Cav1.2 expression and plasma membrane localization. These data are the first to suggest a molecular link between the MAPK-ERK cascade and calcium signaling, which provides insight into the mechanism by which DUSP4 modulates neuronal differentiation.
蛋白质酪氨酸磷酸酶已被公认为是多种基本细胞过程信号调节因子的关键组成部分,这些过程包括分化、细胞死亡和迁移。在本研究中,我们表明双特异性磷酸酶4(DUSP4)对于神经元分化至关重要,并且在胚胎干细胞(ESC)的神经发生中发挥作用。在小鼠从胚胎干细胞发育到出生后阶段的过程中,DUSP4的内源性mRNA和蛋白质表达水平逐渐升高。在分化的神经元中,通过基因敲除DUSP4,神经突生长和神经元特异性标志物的表达显著降低,而重新引入DUSP4可挽救这些效应。此外,在神经元分化过程中,敲低DUSP4会显著增强细胞外信号调节激酶(ERK)的激活。此外,DUSP4-ERK途径不仅通过调节Ca(2+)/钙调蛋白依赖性激酶I的磷酸化,还通过促进Cav1.2的表达和质膜定位来平衡钙信号。这些数据首次表明了丝裂原活化蛋白激酶-ERK级联反应与钙信号之间的分子联系,这为DUSP4调节神经元分化的机制提供了深入了解。