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酪蛋白激酶II对血清反应因子的磷酸化作用:反对其在生长因子对fos表达调控中起作用的证据。

Phosphorylation of serum response factor by casein kinase II: evidence against a role in growth factor regulation of fos expression.

作者信息

Manak J R, Prywes R

机构信息

Department of Biological Sciences, Columbia University, New York, New York 10027.

出版信息

Oncogene. 1993 Mar;8(3):703-11.

PMID:8437853
Abstract

Serum response factor (SRF) is a transcription factor involved in the serum and growth factor regulation of the c-fos gene. SRF is phosphorylated by casein kinase II (CKII), which causes a large increase in its DNA-binding activity. CKII activity has been shown to be stimulated by growth factors and serum. Since c-fos transcription is induced by a number of the same agents that stimulate CKII activity, and since fos activation and CKII stimulation demonstrate similar rapid kinetics, a role was proposed for CKII in regulating fos expression via its phosphorylation of SRF. In this report, we provide evidence against this hypothesis by using several different strategies. First, by immunoprecipitation of SRF from cells, we show that the phosphorylation state of SRF does not change upon growth factor treatment. Second, by two-dimensional electrophoresis of lysates from a cell line that overexpresses SRF, we show that, although SRF exists in the cell in several different isoforms, there is no change in their relative amounts upon serum stimulation. Third, we tested the activity of an SRF mutant that binds DNA at constitutively high levels irrespective of CKII phosphorylation. If phosphorylation is regulatory, this mutant would be expected to constitutively activate (or repress) fos expression. However, when overexpressed stably in cells this mutant had no effect on endogenous c-fos expression, suggesting that CKII phosphorylation of SRF is not the limiting event for fos activation.

摘要

血清反应因子(SRF)是一种转录因子,参与c-fos基因的血清和生长因子调节。SRF被酪蛋白激酶II(CKII)磷酸化,这会导致其DNA结合活性大幅增加。已表明CKII活性受生长因子和血清刺激。由于c-fos转录由许多刺激CKII活性的相同因子诱导,且fos激活和CKII刺激表现出相似的快速动力学,因此有人提出CKII通过其对SRF的磷酸化在调节fos表达中发挥作用。在本报告中,我们通过使用几种不同策略提供了反对这一假设的证据。首先,通过从细胞中免疫沉淀SRF,我们表明生长因子处理后SRF的磷酸化状态没有改变。其次,通过对过表达SRF的细胞系裂解物进行二维电泳,我们表明,尽管SRF在细胞中以几种不同的异构体形式存在,但血清刺激后它们的相对量没有变化。第三,我们测试了一种SRF突变体的活性,该突变体无论CKII磷酸化如何都以组成型高水平结合DNA。如果磷酸化具有调节作用,那么预计该突变体将组成型激活(或抑制)fos表达。然而,当在细胞中稳定过表达时,该突变体对内源性c-fos表达没有影响,这表明SRF的CKII磷酸化不是fos激活的限制因素。

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