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首页> 外文期刊>Molecular and Cellular Biology >Cell Density-Dependent Inhibition of Epidermal Growth Factor Receptor Signaling by p38α Mitogen-Activated Protein Kinase via Sprouty2 Downregulation
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Cell Density-Dependent Inhibition of Epidermal Growth Factor Receptor Signaling by p38α Mitogen-Activated Protein Kinase via Sprouty2 Downregulation

机译:p38α丝裂原活化蛋白激酶通过Sprouty2下调对细胞密度依赖性表皮生长因子受体信号的抑制

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Contact inhibition is a fundamental process in multicellular organisms aimed at inhibiting proliferation at high cellular densities through poorly characterized intracellular signals, despite availability of growth factors. We have previously identified the protein kinase p38α as a novel regulator of contact inhibition, as p38α is activated upon cell-cell contacts and p38α-deficient cells are impaired in both confluence-induced proliferation arrest and p27Kip1 accumulation. Here, we establish that p27Kip1 plays a key role downstream of p38α to arrest proliferation at high cellular densities. Surprisingly, p38α does not directly regulate p27Kip1 expression levels but leads indirectly to confluent upregulation of p27Kip1 and cell cycle arrest via the inhibition of mitogenic signals originating from the epidermal growth factor receptor (EGFR). Hence, confluent activation of p38α uncouples cell proliferation from mitogenic stimulation by inducing EGFR degradation through downregulation of the EGFR-stabilizing protein Sprouty2 (Spry2). Accordingly, confluent p38α-deficient cells fail to downregulate Spry2, providing them in turn with sustained EGFR signaling that facilitates cell overgrowth and oncogenic transformation. Our results provide novel mechanistic insight into the role of p38α as a sensor of cell density, which induces confluent cell cycle arrest via the Spry2-EGFR-p27Kip1 network.
机译:尽管有生长因子的存在,接触抑制是多细胞生物中的一个基本过程,旨在通过不良的细胞内信号抑制高细胞密度下的增殖。我们先前已经确定蛋白激酶p38α是一种新型的接触抑制调节剂,因为p38α在细胞与细胞接触时被激活,而p38α缺陷型细胞在融合诱导的增殖停滞和p27 Kip1 积累中均受损。 。在这里,我们确定p27 Kip1 在p38α下游起着阻止高细胞密度增殖的关键作用。令人惊讶的是,p38α并不直接调节p27 Kip1 的表达水平,而是通过抑制表皮生长因子产生的有丝分裂信号间接导致p27 Kip1 的融合上调和细胞周期阻滞受体(EGFR)。因此,p38α的融合激活通过下调EGFR稳定蛋白Sprouty2(Spry2)诱导EGFR降解,从而使细胞增殖与有丝分裂刺激脱钩。因此,融合的p38α缺陷细胞无法下调Spry2,从而为它们提供持续的EGFR信号传导,从而促进细胞过度生长和致癌性转化。我们的研究结果为p38α作为细胞密度传感器的作用提供了新颖的机理性见解,后者通过Spry2-EGFR-p27 Kip1 网络诱导融合细胞周期停滞。

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