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类视黄醇X受体在ω环处的磷酸化,以启动子背景特异性调节视黄酸靶基因的表达。

Phosphorylation of the retinoid x receptor at the omega loop, modulates the expression of retinoic-acid-target genes with a promoter context specificity.

作者信息

Bruck Nathalie, Bastien Julie, Bour Gaétan, Tarrade Anne, Plassat Jean-Luc, Bauer Annie, Adam-Stitah Sylvie, Rochette-Egly Cécile

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM /ULP, BP 10142, 67404 Illkirch Cedex, France.

出版信息

Cell Signal. 2005 Oct;17(10):1229-39. doi: 10.1016/j.cellsig.2004.12.006. Epub 2005 Jan 20.

DOI:10.1016/j.cellsig.2004.12.006
PMID:16038797
Abstract

The retinoid response is mediated by two classes of nuclear receptors, the retinoic acid receptors (RARalpha, beta, and gamma) and the retinoid X receptors (RXRalpha, beta, and gamma) which act as ligand-dependent heterodimeric RAR/RXR transcription activators. Like most transcription factors, RARs and RXRs are regulated by phosphorylation processes. Here, we report that stress agents induce RXRalpha phosphorylation, subsequently to the activation of the stress-activated protein kinases cascade (JNKs). This phosphorylation process concerns three residues located in the N-terminal AF-1 domain of RXRalpha and one located in the omega loop of the Ligand Binding Domain. To decipher how stress-induced RXRalpha phosphorylation influences the transcription of RA-target genes, we used a ribotoxic stress agent, anisomycin, which activates signaling kinases without promoting DNA or protein damages, at subinhibitory concentrations. Taking advantage of vectors expressing recombinant RXRalpha mutated at its phosphorylation sites and of F9 cell lines re-expressing the same RXRalpha mutants in an RXRalpha null background, we provide evidence that stress signaling modulates RAR/RXRalpha-mediated transcription, through the phosphorylation of RXRalpha at the residue located in the Omega loop, in a promoter context-dependent manner.

摘要

类视黄醇反应由两类核受体介导,即视黄酸受体(RARα、β和γ)和类视黄醇X受体(RXRα、β和γ),它们作为配体依赖性异二聚体RAR/RXR转录激活因子发挥作用。与大多数转录因子一样,RAR和RXR受磷酸化过程调控。在此,我们报告应激因子在应激激活蛋白激酶级联反应(JNK)激活后诱导RXRα磷酸化。该磷酸化过程涉及位于RXRα N端AF-1结构域的三个残基以及位于配体结合结构域ω环的一个残基。为了解应激诱导的RXRα磷酸化如何影响RA靶基因的转录,我们使用了一种核糖体毒性应激因子茴香霉素,在亚抑制浓度下,它可激活信号激酶而不促进DNA或蛋白质损伤。利用表达在其磷酸化位点突变的重组RXRα的载体以及在RXRα缺失背景下重新表达相同RXRα突变体的F9细胞系,我们提供证据表明应激信号通过位于ω环的残基处RXRα的磷酸化,以启动子背景依赖的方式调节RAR/RXRα介导的转录。

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