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Identification of the functional components of the Ras signaling pathway regulating pituitary cell-specific gene expression.

机译:鉴定调节垂体细胞特异性基因表达的Ras信号传导途径的功能成分。

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摘要

Ras, a small GTP-binding protein, is required for functional receptor tyrosine kinase signaling. Ultimately, Ras alters the activity of specific nuclear transcription factors and regulates novel patterns of gene expression. Using a rat prolactin promoter construct in transient transfection experiments, we show that both oncogenic Ras and activated forms of Raf-1 kinase selectively stimulated the cellular rat prolactin promoter in GH4 rat pituitary cells. We also show that the Ras signal is completely blocked by an expression vector encoding a dominant-negative Raf kinase. Additionally, using a molecular genetic approach, we determined that inhibitory forms of p42 mitogen-activated protein kinase and an Ets-2 transcription factor interfere with both the Ras and the Raf activation of the rat prolactin promoter. These findings define a functional requirement for these signaling constituents in the activation of the prolactin gene, a cell-specific gene which marks the lactotroph pituitary cell type. Further, this analysis allowed us to order the components in the Ras signaling pathway as it impinges on regulation of prolactin gene transcription as Ras-->Raf kinase-->mitogen-activated protein kinase-->Ets. In contrast, we show that intact c-Jun expression inhibited the Ras-induced activation of the prolactin promoter, defining it as a negative regulator of this pathway, whereas c-Jun was able to enhance the Ras activation of an AP-1-driven promoter in GH4 cells. These data show that c-Jun is not the nuclear mediator of the Ras signal for the highly specialized, pituitary cell-specific prolactin cellular promoter. Thus, we have defined a model system which provides an ideal paradigm for studying Ras/Raf signaling pathways and their effects on neuroendocrine cell-specific gene regulation.
机译:Ras是一种小的GTP结合蛋白,是功能性受体酪氨酸激酶信号传导所必需的。最终,Ras改变了特定核转录因子的活性并调节了基因表达的新模式。在瞬时转染实验中使用大鼠催乳素启动子构建体,我们显示致癌Ras和激活形式的Raf-1激酶选择性刺激GH4大鼠垂体细胞中的细胞大鼠催乳素启动子。我们还显示,Ras信号被编码显性阴性Raf激酶的表达载体完全阻断。此外,使用分子遗传方法,我们确定抑制形式的p42丝裂原活化蛋白激酶和Ets-2转录因子干扰大鼠催乳素启动子的Ras和Raf激活。这些发现确定了催乳素基因的激活对这些信号传导成分的功能要求,催乳素基因是一种细胞特异性基因,可标记泌乳体垂体细胞类型。此外,该分析使我们能够对Ras信号通路中的成分进行排序,因为它会影响催乳素基因转录的调控,如Ras-> Raf激酶->促分裂原活化的蛋白激酶-> Ets。相反,我们显示完整的c-Jun表达抑制了Ras诱导的催乳素启动子的激活,将其定义为该途径的负调节剂,而c-Jun能够增强AP-1驱动的Ras激活GH4细胞中的启动子。这些数据表明,c-Jun不是高度特异性的垂体细胞特异性催乳素细胞启动子的Ras信号的核介质。因此,我们定义了一个模型系统,该模型系统为研究Ras / Raf信号通路及其对神经内分泌细胞特异性基因调控的作用提供了理想的范例。

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