首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Down-regulation of WNK1 protein kinase in neural progenitor cells suppresses cell proliferation and migration.
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Down-regulation of WNK1 protein kinase in neural progenitor cells suppresses cell proliferation and migration.

机译:WNK1蛋白激酶在神经祖细胞中的下调抑制了细胞的增殖和迁移。

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摘要

WNK1, a Ser/Thr protein kinase, is widely expressed in many tissues. Its biological functions are largely unknown. Disruption of the WNK1 gene in mice leads to embryonic lethality at day 13, implicating a critical role of WNK1 in embryonic development. To investigate this potential function, we used antisense strategy to knock down the expression of WNK1 in a mouse neural progenitor cell line, C17.2. Down-regulation of WNK1 in C17.2 cells greatly reduced cell growth. Addition of epidermal growth factor (EGF), a mitogen for C17.2 cells, had no effect on growth. The WNK1-knockdown cells showed a flat and rounded morphology, characteristic of the immature and non-differentiated phenotype of the progenitor cells; this was further demonstrated by immunostaining for the progenitor and neuronal markers. Migration of the WNK1-knockdown C17.2 cells was reduced as tested in culture dishes or Matrigel-covered chambers. Moreover, activation of extracellular signal-regulated kinase (ERK1)/2 and ERK5 by EGF in the WNK1-knockdown cells was suppressed. These results demonstrate a novel function of WNK1 in proliferation, migration, and differentiation of neural progenitor cells, likely by mechanisms involving activation of the mitogen-activated protein (MAP) kinase ERK1/2 and/or ERK5 pathways.
机译:WNK1是一种Ser / Thr蛋白激酶,在许多组织中广泛表达。其生物学功能很大程度上未知。小鼠中WNK1基因的破坏在第13天导致胚胎致死率,暗示WNK1在胚胎发育中起关键作用。为了研究这种潜在功能,我们使用了反义策略来敲低小鼠神经祖细胞C17.2中WNK1的表达。 C17.2细胞中WNK1的下调大大降低了细胞的生长。表皮生长因子(EGF)是C17.2细胞的一种有丝分裂原,对生长没有影响。 WNK1组合式细胞显示出扁平圆形的形态,具有祖细胞未成熟和未分化表型的特征。通过祖细胞和神经元标记物的免疫染色进一步证明了这一点。如在培养皿或基质胶覆盖的小室中测试的,减少了WNK1敲低C17.2细胞的迁移。此外,WNK1击倒细胞中的EGF抑制细胞外信号调节激酶(ERK1)/ 2和ERK5的激活。这些结果表明,WNK1在神经祖细胞的增殖,迁移和分化中具有新功能,可能是通过涉及促有丝分裂原活化蛋白(MAP)激酶ERK1 / 2和/或ERK5途径活化的机制引起的。

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