首页> 外文OA文献 >Phosphoinositide-3 Kinase–Rac1–c-Jun NH2-terminal Kinase Signaling Mediates Collagen I–induced Cell Scattering and Up-Regulation of N-Cadherin Expression in Mouse Mammary Epithelial Cells
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Phosphoinositide-3 Kinase–Rac1–c-Jun NH2-terminal Kinase Signaling Mediates Collagen I–induced Cell Scattering and Up-Regulation of N-Cadherin Expression in Mouse Mammary Epithelial Cells

机译:Phosphoinositide-3激酶–Rac1–c-Jun NH2末端激酶信号介导胶原I诱导的小鼠乳腺上皮细胞中的细胞散射和N-钙黏着蛋白表达的上调。

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摘要

During epithelial-to-mesenchymal transitions (EMTs), cells must change their interactions with one another and with their extracellular matrix in a synchronized manner. To characterize signaling pathways cells use to coordinate these changes, we used NMuMG mammary epithelial cells. We showed that these cells become fibroblastic and scattered, with increased N-cadherin expression when cultured on collagen I. Rac1 and c-Jun NH2-terminal kinase (JNK) were activated when cells were plated on collagen I, and dominant inhibitory Rac1 (RacN17) or inhibition of JNK signaling prevented collagen I–induced morphological changes and N-cadherin up-regulation. Furthermore, inhibiting phosphoinositide-3 kinase (PI3K) activity prevented Rac1 and JNK activation as well as collagen I–induced N-cadherin up-regulation. These data implicate PI3K–Rac1–JNK signaling in collagen I–induced changes in NMuMG cells. To establish a role for N-cadherin in collagen I–induced cell scattering, we generated N-cadherin overexpressing and knockdown NMuMG cells and showed that knocking down N-cadherin expression prevented collagen I–induced morphological changes. Motility assays showed that cells overexpressing N-cadherin were significantly more motile than mock-transfected cells and that N-cadherin-mediated motility was collagen I dependent. In addition, we showed that cord formation and branching in three-dimensional culture (EMT-dependent events) required N-cadherin expression and PI3K–Rac1–JNK signaling.
机译:在上皮到间质转化(EMT)期间,细胞必须以同步的方式改变彼此之间以及与细胞外基质的相互作用。为了表征细胞用于协调这些变化的信号通路,我们使用了NMuMG乳腺上皮细胞。我们显示这些细胞在胶原蛋白I上培养后会变成成纤维细胞并散布,N-钙黏着蛋白表达增加。当细胞在胶原蛋白I上铺板时,Rac1和c-Jun NH2末端激酶(JNK)被激活,而主要抑制性Rac1(RacN17 )或抑制JNK信号传导可阻止胶原蛋白I诱导的形态变化和N-钙粘蛋白上调。此外,抑制磷酸肌醇3激酶(PI3K)活性可阻止Rac1和JNK活化以及胶原蛋白I诱导的N-钙粘蛋白上调。这些数据暗示PI3K–Rac1–JNK信号传导在胶原蛋白I诱导的NMuMG细胞变化中。为了建立N-钙黏着蛋白在胶原I诱导的细胞散射中的作用,我们产生了N-钙黏着蛋白的过表达和敲低NMuMG细胞,并证明敲除N-钙黏着蛋白的表达可以阻止胶原I诱导的形态变化。运动性分析表明,过表达N-钙粘蛋白的细胞比模拟转染的细胞具有更高的运动能力,并且N-钙粘蛋白介导的运动是I型胶原依赖性的。此外,我们显示了三维培养中的脐带形成和分支(EMT依赖性事件)需要N-钙粘蛋白表达和PI3K–Rac1–JNK信号传导。

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