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将缺氧与c-fos和AP-1激活相联系的细胞内信号通路。

Intracellular pathways linking hypoxia to activation of c-fos and AP-1.

作者信息

Premkumar D R, Adhikary G, Overholt J L, Simonson M S, Cherniack N S, Prabhakar N R

机构信息

Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, OH 44106-4970, USA.

出版信息

Adv Exp Med Biol. 2000;475:101-9. doi: 10.1007/0-306-46825-5_10.

Abstract

Organisms respond to hypoxia through detection of blood oxygen levels by sensors at peripheral chemoreceptors and by receptors in certain key cells of the body. The pathways over which peripheral chemoreceptor signals are transmitted to respiratory muscles are well established. However, the intracellular pathways that transmit hypoxic stimulus to gene activation are just being identified. Using anti-sense c-fos strategy, we have shown that c-fos is essential for the activation of activator protein-1 transcription factor complex (AP-1) and subsequent stimulation of downstream genes such as tyrosine hydroxylase (TH; Mishra et al. 1998). The purpose of the present study was to identify intracellular pathways that link hypoxia to activation of c-fos. The results of the present study show that hypoxia causes Ca2+ influx through L-type voltage gated Ca2+ channels and that hypoxia-induced c-fos gene expression is Ca2+/calmodulin dependent. We also demonstrate that hypoxia activates the extracellular-regulated kinase (ERK) and p38, but not JNK. Further, phosphorylation of ERK is essential for c-fos activation via SRE cis-element. Further characterization of nuclear signalling pathways provides evidence for the involvement of Src, a non receptor protein tyrosine kinase, and Ras, a small G protein, in the hypoxia-induced c-fos gene expression. These results suggest a possible role for non-receptor protein tyrosine kinases in propagating signals from G-protein coupled receptors to the activation of immediate early genes such as c-fos during hypoxia.

摘要

生物体通过外周化学感受器处的传感器以及身体某些关键细胞中的受体来检测血氧水平,从而对缺氧作出反应。外周化学感受器信号传导至呼吸肌的途径已得到充分证实。然而,将缺氧刺激传导至基因激活的细胞内途径才刚刚被发现。利用反义c-fos策略,我们已经表明c-fos对于激活激活蛋白-1转录因子复合物(AP-1)以及随后刺激下游基因如酪氨酸羟化酶(TH;Mishra等人,1998年)至关重要。本研究的目的是确定将缺氧与c-fos激活联系起来的细胞内途径。本研究结果表明,缺氧通过L型电压门控Ca2+通道导致Ca2+内流,并且缺氧诱导的c-fos基因表达是Ca2+/钙调蛋白依赖性的。我们还证明缺氧激活细胞外调节激酶(ERK)和p38,但不激活JNK。此外,ERK的磷酸化对于通过SRE顺式元件激活c-fos至关重要。对核信号通路的进一步表征为非受体蛋白酪氨酸激酶Src和小G蛋白Ras参与缺氧诱导的c-fos基因表达提供了证据。这些结果表明,在缺氧期间,非受体蛋白酪氨酸激酶在将信号从G蛋白偶联受体传递至激活如c-fos等即刻早期基因的过程中可能发挥作用。

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