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首页> 外文期刊>Oncogene >Effects of a conditionally active v-ErbB and an EGF-R inhibitor on transformation of NIH-3T3 cells and abrogation of cytokine dependency of hematopoietic cells
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Effects of a conditionally active v-ErbB and an EGF-R inhibitor on transformation of NIH-3T3 cells and abrogation of cytokine dependency of hematopoietic cells

机译:条件活性v-ErbB和EGF-R抑制剂对NIH-3T3细胞转化和废除造血细胞细胞因子依赖性的影响

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摘要

Epidermal growth factor (EGF) and its cognate receptor (EGF-R) are often dysregulated in human neoplasia. Moreover, EGF-R-transformed cell lines have constitutive EGF-R activity, which makes elucidation of its effects difficult to determine. In the following studies, the effects of a novel conditionally activated form of EGF-R, v-ErbB:ER, on the morphological transformation of NIH-3T3 cells and the abrogation of hematopoietic cell cytokine dependence were investigated. The v-ErbB ES-4 oncogene was fused to the hormone binding domain of the estrogen receptor (ER). This construct, v-ErbB:ER, requires -estradiol or 4-OH tamoxifen for activation. v-ErbB:ER conditionally transformed NIH-3T3 cells and abrogated cytokine dependence of hematopoietic cells. Stimulation of v-ErbB:ER activity resulted in the activation of the phosphatidylinositol 3-kinase (PI3K)/Akt and Raf/MEK/ERK kinase cascades. To determine the importance of these signal transduction pathways, the conditionally transformed hematopoietic cells were treated with EGF-R, PI3K and MEK inhibitors. The EGF-R inhibitor AG1478 effectively inhibited MEK, ERK and Akt activation, and induced apoptosis when the cells were grown in response to v-ErbB:ER. Apoptosis was observed at 100- to 1000-fold lower concentrations of AG1478 when the cells were grown in response to v-ErbB:ER as opposed to IL-3. Furthermore, the parental, BCR-ABL- and Raf-transformed cells were only susceptible to the apoptosis-inducing effects of AG1478 at the highest concentrations demonstrating the specificity of these inhibitors. MEK or PI3K inhibitors suppressed ERK or Akt activation, respectively, and induced apoptosis in the v-ErbB:ER-responsive cells. However, MEK and PI3K inhibitors only induced apoptosis at 1000-fold higher concentrations than the EGFR inhibitor. This novel v-ErbB:ER construct and these conditionally transformed cell lines will be useful to further elucidate ErbB-mediated signal transduction and to determine the effectiveness of various inhibitors in targeting different aspects of EGF-R-mediated signal transduction and malignant transformation.
机译:表皮生长因子(EGF)及其相关受体(EGF-R)在人类肿瘤中常常失调。而且,EGF-R转化的细胞系具有组成型EGF-R活性,这使得难以确定其作用。在以下研究中,研究了新型的条件激活形式的EGF-R v-ErbB:ER对NIH-3T3细胞形态转化和废除造血细胞细胞因子依赖性的影响。 v-ErbB ES-4癌基因融合到雌激素受体(ER)的激素结合域上。此构建体v-ErbB:ER需要激活雌二醇或4-OH他莫昔芬。 v-ErbB:ER有条件地转化了NIH-3T3细胞,并废除了造血细胞的细胞因子依赖性。 v-ErbB:ER活性的刺激导致磷脂酰肌醇3激酶(PI3K)/ Akt和Raf / MEK / ERK激酶级联反应的激活。为了确定这些信号转导途径的重要性,将有条件转化的造血细胞用EGF-R,PI3K和MEK抑制剂处理。当细胞响应v-ErbB:ER生长时,EGF-R抑制剂AG1478有效抑制MEK,ERK和Akt活化,并诱导凋亡。当细胞响应v-ErbB:ER而不是IL-3生长时,在较低的AG1478浓度下可以观察到凋亡100-1000倍。此外,亲本,BCR-ABL和Raf转化的细胞仅在最高浓度下对AG1478的凋亡诱导作用敏感,这证明了这些抑制剂的特异性。 MEK或PI3K抑制剂分别抑制ERK或Akt活化,并诱导v-ErbB:ER反应性细胞凋亡。但是,MEK和PI3K抑制剂仅以比EGFR抑制剂高1000倍的浓度诱导凋亡。这种新颖的v-ErbB:ER构建体和这些条件转化的细胞系将有助于进一步阐明ErbB介导的信号转导,并确定各种抑制剂针对EGF-R介导的信号转导和恶性转化的不同方面的有效性。

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