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曲匹地尔通过阻止干扰素-γ诱导的信号转导和转录激活因子1(STAT1)第727位丝氨酸磷酸化来抑制单核细胞CD40表达。

Trapidil inhibits monocyte CD40 expression by preventing IFN-gamma-induced STAT1 S727 phosphorylation.

作者信息

Zhou Ling, Schandené Liliane, Mordvinov Viatcheslav A, Chatelain Pierre, Pradier Olivier, Goldman Michel, Stordeur Patrick

机构信息

Department of Immunology-Hematology-Transfusion, Erasme Hospital, Université Libre de Bruxelles, route de Lennik, 808, Brussels, B-1070, Belgium.

出版信息

Int Immunopharmacol. 2004 Jul;4(7):863-71. doi: 10.1016/j.intimp.2004.03.007.

Abstract

Trapidil is a triazolopyrimidine that has been found to prevent restenosis after vascular injury. Although its precise mode of action is still unclear, several biological effects have been described including inhibition of IFN-gamma-induced CD40 expression on monocytes. Herein, we investigated the molecular mechanisms by which Trapidil exerts this inhibitory action. First, we observed that the inhibition of CD40 expression is associated with the suppression of CD40 gene transcription, as demonstrated by a clear decrease of CD40 nuclear RNA (nRNA) levels and unchanged CD40 mRNA half-life. IFN-gamma-induced CD40 transcription has been shown to be mediated by STAT1alpha dimers (p91/p84) which, after nuclear translocation, bind to GAS elements present in the promoter of IFN-gamma responsive genes. Electrophoresis mobility shift assay (EMSA) with both STAT1 consensus and CD40 mGAS probes showed that Trapidil did not affect the DNA binding ability of STAT1 dimers. STAT1 dimerization and activation are conferred by upstream phosphorylation of two amino acid residues of the STAT1 protein. The subsequent studies on these two potential STAT1 phosphorylation sites (Tyr701, Ser727) revealed that Trapidil attenuated IFN-gamma-induced Ser727 but not Tyr701 phosphorylation. The inhibition of CD40 transcription by Trapidil could at least partially owing to the impaired Ser727 phosphorylation of STAT1, since IFN-gamma failed to trigger CD40 expression in U3A S727A cells, a cell line displaying a point mutation at the Ser727 site. Collectively, our results indicate that phosphorylation of STAT1 at the Ser727 site enhances CD40 transcription and that Trapidil might be used as a selective inhibitor that could differentially modulate STAT1 target genes.

摘要

曲匹地尔是一种三唑并嘧啶,已被发现可预防血管损伤后的再狭窄。尽管其确切作用机制尚不清楚,但已描述了几种生物学效应,包括抑制干扰素-γ诱导的单核细胞上CD40的表达。在此,我们研究了曲匹地尔发挥这种抑制作用的分子机制。首先,我们观察到CD40表达的抑制与CD40基因转录的抑制有关,这通过CD40核RNA(nRNA)水平的明显降低和CD40 mRNA半衰期不变得到证明。干扰素-γ诱导的CD40转录已被证明是由STAT1α二聚体(p91/p84)介导的,在核转位后,它们与干扰素-γ反应基因启动子中存在的GAS元件结合。使用STAT1共有序列和CD40 mGAS探针进行的电泳迁移率变动分析(EMSA)表明,曲匹地尔不影响STAT1二聚体的DNA结合能力。STAT1二聚化和激活是由STAT1蛋白的两个氨基酸残基的上游磷酸化赋予的。随后对这两个潜在的STAT1磷酸化位点(Tyr701、Ser727)的研究表明,曲匹地尔减弱了干扰素-γ诱导的Ser727磷酸化,但不影响Tyr701磷酸化。曲匹地尔对CD40转录的抑制至少部分归因于STAT1的Ser727磷酸化受损,因为干扰素-γ未能在U3A S727A细胞中触发CD40表达,U3A S727A细胞系在Ser727位点存在点突变。总体而言,我们的结果表明,STAT1在Ser727位点的磷酸化增强了CD40转录,并且曲匹地尔可能用作可差异调节STAT1靶基因的选择性抑制剂。

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