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缺氧对GRP78及信使核糖核酸水平的调节作用受蛋白激酶C激活剂和抑制剂的调控。

The regulation of GRP78 and messenger RNA levels by hypoxia is modulated by protein kinase C activators and inhibitors.

作者信息

Koong A C, Auger E A, Chen E Y, Giaccia A J

机构信息

Department of Radiation Oncology, Stanford University School of Medicine, California 94305-5468.

出版信息

Radiat Res. 1994 Apr;138(1 Suppl):S60-3.

PMID:8146329
Abstract

In this study, we have shown that steady-state levels of glucose-regulated 78 kDa (GRP78) protein and messenger RNA increase during a 5-h exposure to 0.02% oxygen. This increase in GRP78 protein and mRNA induced by hypoxia can be abolished by a 1-h pretreatment of cells before hypoxia with the protein kinase C (PKC) inhibitors staurosporine and H7 at concentrations at which the drugs themselves do not cause cytotoxicity. Although all studies using protein kinase inhibitors must be interpreted with caution, staurosporine and H7 have been shown to be potent inhibitors of PKC activity, suggesting a role for PKC in mediating the transcriptional regulation of GRP78 by hypoxia. Further support for PKC in regulating GRP78 gene expression by hypoxia stems from gel-mobility shift studies in mixtures of nuclear extracts from aerobic or hypoxic cells with a 36 bp region of the GRP78 promoter (-170 to -135). Binding of this factor could be inhibited by pretreating cells with the PKC inhibitor staurosporine before hypoxia or activated by treating cells with the PKC-activating phorbol ester TPA. These data suggest that activation of this hypoxia-responsive factor is sensitive to oxygen levels and seems to be mediated through a PKC signal transduction pathway.

摘要

在本研究中,我们发现,在暴露于0.02%氧气5小时的过程中,葡萄糖调节蛋白78 kDa(GRP78)和信使核糖核酸的稳态水平会升高。在缺氧前用蛋白激酶C(PKC)抑制剂星形孢菌素和H7对细胞进行1小时预处理,可消除缺氧诱导的GRP78蛋白和信使核糖核酸的这种增加,所用药物浓度本身不会引起细胞毒性。尽管所有使用蛋白激酶抑制剂的研究都必须谨慎解读,但星形孢菌素和H7已被证明是PKC活性的有效抑制剂,这表明PKC在介导缺氧对GRP78的转录调控中发挥作用。缺氧时PKC调节GRP78基因表达的进一步证据来自凝胶迁移率变动分析,该分析采用有氧或缺氧细胞的核提取物与GRP78启动子(-170至-135)的36 bp区域混合。在缺氧前用PKC抑制剂星形孢菌素预处理细胞可抑制该因子的结合,或者用PKC激活剂佛波酯TPA处理细胞可激活该因子的结合。这些数据表明,这种缺氧反应因子的激活对氧水平敏感,似乎是通过PKC信号转导途径介导的。

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