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细胞增殖与转化中Mek1信号传导的分析

An analysis of Mek1 signaling in cell proliferation and transformation.

作者信息

Greulich H, Erikson R L

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

J Biol Chem. 1998 May 22;273(21):13280-8. doi: 10.1074/jbc.273.21.13280.

Abstract

The Mek1 dual specificity protein kinase phosphorylates and activates the mitogen-activated protein kinases Erk1 and Erk2 in response to mitogenic stimulation. The molecular events downstream of Mek and Erk necessary to promote cell cycle entry are largely undefined. In order to study signals emanating from Mek independent of upstream proteins capable of activating multiple signaling pathways, we fused the hormone-binding domain of the estrogen receptor (ER) to the C terminus of constitutively activated Mek1 phosphorylation site mutants. Although 4-OH-tamoxifen stimulation of NIH-3T3 cells expressing constitutively activated Mek-ER resulted in only a small increase in specific activity of the fusion protein, a 5-10 fold increase in total cellular Mek activity was observed over a period of 1-2 days due to an accumulation of fusion protein. Induction of constitutively activated Mek-ER in NIH-3T3 cells resulted in accelerated S phase entry, proliferation in low serum, morphological transformation, and anchorage independent growth. Endogenous Erk1 and Erk2 were phosphorylated with kinetics similar to the elevation of Mek-ER activity. However, elevated Mek-ER activity attenuated subsequent stimulation of Erk1 and Erk2 by serum. 4-OH-tamoxifen stimulation of Mek-ER-expressing fibroblasts also resulted in up-regulation of cyclin D1 expression and down-regulation of p27(Kip1) expression, establishing a direct link between Mek1 and the cell cycle machinery.

摘要

丝裂原活化蛋白激酶激酶1(Mek1)双特异性蛋白激酶在有丝分裂原刺激下磷酸化并激活丝裂原活化蛋白激酶Erk1和Erk2。促进细胞周期进入所必需的Mek和Erk下游的分子事件在很大程度上尚不清楚。为了研究独立于能够激活多种信号通路的上游蛋白的Mek发出的信号,我们将雌激素受体(ER)的激素结合结构域融合到组成型活化的Mek1磷酸化位点突变体的C末端。尽管用4-羟基他莫昔芬刺激表达组成型活化的Mek-ER的NIH-3T3细胞仅导致融合蛋白的比活性略有增加,但由于融合蛋白的积累,在1-2天的时间内观察到总细胞Mek活性增加了5-10倍。在NIH-3T3细胞中诱导组成型活化的Mek-ER导致S期进入加速、在低血清中增殖、形态转化和不依赖贴壁生长。内源性Erk1和Erk2的磷酸化动力学与Mek-ER活性的升高相似。然而,升高的Mek-ER活性减弱了随后血清对Erk1和Erk2的刺激。用4-羟基他莫昔芬刺激表达Mek-ER的成纤维细胞也导致细胞周期蛋白D1表达上调和p27(Kip1)表达下调,从而在Mek1和细胞周期机制之间建立了直接联系。

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