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在周期性、静止和受刺激的成纤维细胞中Jun和Fos蛋白表达及AP-1活性的变化

Variations in Jun and Fos protein expression and AP-1 activity in cycling, resting and stimulated fibroblasts.

作者信息

Lallemand D, Spyrou G, Yaniv M, Pfarr C M

机构信息

Unité des Virus Oncogènes, UA 1149 du CNRS Département des Biotechnologies, Institut Pasteur, Paris, France.

出版信息

Oncogene. 1997 Feb 20;14(7):819-30. doi: 10.1038/sj.onc.1200901.

DOI:10.1038/sj.onc.1200901
PMID:9047389
Abstract

We have analysed the different Jun and Fos proteins as NIH3T3 fibroblasts pass from exponential growth to quiescence and during the first 24 h after their re-entry into the cell cycle following serum stimulation. We show that these proteins can be divided into 3 subgroups based on their pattern of expression. The first contains c-Jun, Jun-D and Fra-2 which are expressed at high level in cycling cells and are only mildly induced by serum. The second contains Jun-B, c-Fos, Fos-B and deltaFos-B whose levels are low in cycling cells but increase strongly and rapidly after stimulation by serum. The third group contains only Fra-1, which is absent from cycling cells and behaves as a delayed early response protein after serum stimulation. AP-1 binding activity is low both in cycling and quiescent fibroblasts but increases after stimulation by serum with kinetics matching the induction of the various Jun and Fos proteins. Antibody supershift analyses demonstrate that the composition of AP-1 binding activity reflects the relative abundance of each Jun and Fos protein. Furthermore, the state of post-translational modification varies continuously for all of the AP-1 proteins as growth conditions change. These data indicate that AP-1 activity during the G0-G1 transition is finely regulated and complex, involving changes both in protein expression and in posttranslational modification.

摘要

我们分析了NIH3T3成纤维细胞从指数生长进入静止期以及在血清刺激后重新进入细胞周期的最初24小时内不同的Jun和Fos蛋白。我们发现,这些蛋白可根据其表达模式分为3个亚组。第一组包含c-Jun、Jun-D和Fra-2,它们在循环细胞中高水平表达,仅受到血清轻度诱导。第二组包含Jun-B、c-Fos、Fos-B和δFos-B,其在循环细胞中的水平较低,但在血清刺激后强烈且迅速增加。第三组仅包含Fra-1,其在循环细胞中不存在,在血清刺激后表现为延迟早期反应蛋白。AP-1结合活性在循环和成纤维细胞静止期均较低,但在血清刺激后增加,其动力学与各种Jun和Fos蛋白的诱导相匹配。抗体超迁移分析表明,AP-1结合活性的组成反映了每种Jun和Fos蛋白的相对丰度。此外,随着生长条件的变化,所有AP-1蛋白的翻译后修饰状态持续变化。这些数据表明,G0-G1期转变过程中的AP-1活性受到精细调节且复杂,涉及蛋白质表达和翻译后修饰的变化。

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