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首页> 外文期刊>Oncogene >Protein kinase WNK2 inhibits cell proliferation by negatively modulating the activation of MEK1|[sol]|ERK1|[sol]|2
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Protein kinase WNK2 inhibits cell proliferation by negatively modulating the activation of MEK1|[sol]|ERK1|[sol]|2

机译:蛋白激酶WNK2通过负调节MEK1 | [sol] | ERK1 | [sol] | 2的激活来抑制细胞增殖

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摘要

The recently identified subfamily of WNK protein kinases is characterized by a unique sequence variation in the catalytic domain and four related human WNK genes were identified. Here, we describe the cloning and functional analysis of the human family member WNK2. We show that the depletion of endogenous WNK2 expression by RNA interference in human cervical HeLa cancer cells led to the activation of the extracellular signal–regulated kinase (ERK)1/2 mitogen-activated protein kinases but, in contrast to the depletion of WNK1, had no effect on ERK5. Furthermore, expression of a kinase-dead WNK2-K207M mutant also activated ERK1/2 suggesting that WNK2 catalytic activity is required. Depletion of WNK2 expression increased G1/S progression and potentiated the cellular response to low epidermal growth factor concentrations. The molecular mechanism of ERK1/2 activation in WNK2-depleted cells lies downstream of the Raf kinases and involves MEK1 phosphorylation at serine 298 in both HeLa and HT29 colon cancer cells. This modification is linked to the upregulation of MEK1 activity toward ERK1/2. Together, these results provide evidence that WNK2 is involved in the modulation of growth factor–induced cancer cell proliferation through the MEK1/ERK1/2 pathway. The data identify WNK2 as a candidate tumor suppressor gene and suggest a coordinated activity of WNK kinases in the regulation of cell proliferation.
机译:最近鉴定出的WNK蛋白激酶亚家族的特征是催化域中独特的序列变异,并鉴定了四个相关的人类WNK基因。在这里,我们描述了人类家庭成员WNK2的克隆和功能分析。我们显示,人类宫颈癌HeLa癌细胞中RNA干扰对内源性WNK2表达的耗竭导致细胞外信号调节激酶(ERK)1/2丝裂原激活的蛋白激酶的激活,但与WNK1耗竭相反,对ERK5没有影响。此外,激酶死亡的WNK2-K207M突变体的表达也激活了ERK1 / 2,表明需要WNK2催化活性。 WNK2表达的耗竭增加了G1 / S进程,并增强了对低表皮生长因子浓度的细胞反应。 WNK2缺失的细胞中ERK1 / 2激活的分子机制位于Raf激酶的下游,并且在HeLa和HT29结肠癌细胞中都涉及丝氨酸298处的MEK1磷酸化。该修饰与MEK1活性向ERK1 / 2的上调有关。总之,这些结果提供了证据,表明WNK2通过MEK1 / ERK1 / 2途径参与调节生长因子诱导的癌细胞增殖。数据确定WNK2为候选肿瘤抑制基因,并暗示WNK激酶在细胞增殖调控中具有协同活性。

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