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丝裂原活化蛋白激酶在1,25 - 二羟基维生素D3诱导的大鼠细胞色素P450C24(CYP24)启动子反式激活中的作用。细胞外信号调节激酶1/2(ERK1/ERK2)和细胞外信号调节激酶5(ERK5)的特定功能。

Role of MAP kinases in the 1,25-dihydroxyvitamin D3-induced transactivation of the rat cytochrome P450C24 (CYP24) promoter. Specific functions for ERK1/ERK2 and ERK5.

作者信息

Dwivedi Prem P, Hii Charles S T, Ferrante Antonio, Tan Joseph, Der Channing J, Omdahl John L, Morris Howard A, May Brian K

机构信息

Department of Molecular Biosciences (Biochemistry), University of Adelaide, Adelaide, Australia 5005.

出版信息

J Biol Chem. 2002 Aug 16;277(33):29643-53. doi: 10.1074/jbc.M204561200. Epub 2002 Jun 4.

Abstract

The current study investigated the action of 1,25-dihydroxyvitamin D(3) (1,25D) at the genomic and signal transduction levels to induce rat cytochrome P450C24 (CYP24) gene expression. A rat CYP24 promoter containing two vitamin D response elements and an Ets-1 binding site was used to characterize the mechanism of actions for the 1,25D secosteroid hormone. The Ets-1 binding site was determined to function cooperatively with the most proximal vitamin D response element in a hormone-dependent fashion. Evidence was obtained for distinct roles of ERK1/ERK2 and ERK5 in the 1,25D-inductive actions. Specifically, 1,25D stimulated the activities of ERK1/ERK2 and ERK5 in a Ras-dependent manner. Promoter induction was inhibited by mitogen-activated protein (MAP) kinase inhibitors (PD98059 and U0126) and a dominant-negative Ras mutant (Ras17N). Induction of CYP24 by 1,25D was also inhibited by overexpression of dominant-negative mutants of ERK1 and MEK5 (ERK1K71R and MEK5(A)). The p38 and JNK MAP kinases were not required for the action of 1,25D. 9-cis retinoid X receptor alpha (RXR alpha) interacted with ERK2 but not ERK5 in intact cells, whereas Ets-1 interacted preferentially with ERK5. Increased phosphorylation of RXR alpha and Ets-1 was detected in response to 1,25D. Activated ERK2 and ERK5 specifically phosphorylated RXR alpha and Ets-1, respectively. Mutagenesis of Ets-1 (T38A) reduced CYP24 promoter activity to levels observed with the dominant-negative MEK5(A) and inhibited ERK5-directed phosphorylation. Mutated RXR alpha (S260A) inhibited 1,25D-induced CYP24 promoter activity and abolished phosphorylation by activated ERK2. The 1,25D-inductive action through ERK5 involved Ets-1 phosphorylation at threonine 38, whereas hormone stimulation of ERK1/ERK2 required RXR alpha phosphorylation on serine 260. The ERK1/ERK2 and ERK5 modules provide a novel mechanism for linking the rapid signal transduction and slower transcription actions of 1,25D to induce CYP24 gene expression.

摘要

本研究在基因和信号转导水平上探究了1,25 - 二羟基维生素D(3)(1,25D)诱导大鼠细胞色素P450C24(CYP24)基因表达的作用。使用含有两个维生素D反应元件和一个Ets - 1结合位点的大鼠CYP24启动子来表征1,25D甾体激素的作用机制。确定Ets - 1结合位点以激素依赖的方式与最靠近近端的维生素D反应元件协同发挥作用。获得了ERK1/ERK2和ERK5在1,25D诱导作用中具有不同作用的证据。具体而言,1,25D以Ras依赖的方式刺激ERK1/ERK2和ERK5的活性。启动子诱导受到丝裂原活化蛋白(MAP)激酶抑制剂(PD98059和U0126)和显性负性Ras突变体(Ras17N)的抑制。ERK1和MEK5的显性负性突变体(ERK1K71R和MEK5(A))的过表达也抑制了1,25D对CYP24的诱导。1,25D的作用不需要p38和JNK MAP激酶。在完整细胞中,9 - 顺式视黄酸X受体α(RXRα)与ERK2相互作用,但不与ERK5相互作用,而Ets - 1优先与ERK5相互作用。检测到响应1,25D时RXRα和Ets - 1的磷酸化增加。活化的ERK2和ERK5分别特异性地磷酸化RXRα和Ets - 1。Ets - 1(T38A)的诱变将CYP24启动子活性降低到显性负性MEK5(A)所观察到的水平,并抑制了ERK5介导的磷酸化。突变的RXRα(S260A)抑制1,25D诱导的CYP24启动子活性,并消除活化的ERK2的磷酸化作用。通过ERK5的1,25D诱导作用涉及Ets - 1苏氨酸38位的磷酸化,而激素对ERK1/ERK2的刺激需要RXRα丝氨酸260位的磷酸化。ERK1/ERK2和ERK5模块为将1,25D的快速信号转导和较慢的转录作用联系起来以诱导CYP24基因表达提供了一种新机制。

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