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结构域特异性磷酸模拟突变可解析RNA结合蛋白HuR由不同蛋白激酶C(PKC)同工型触发的活性。

Domain-specific phosphomimetic mutation allows dissection of different protein kinase C (PKC) isotype-triggered activities of the RNA binding protein HuR.

作者信息

Schulz Sebastian, Doller Anke, Pendini Nicole R, Wilce Jacqueline A, Pfeilschifter Josef, Eberhardt Wolfgang

机构信息

pharmazentrum frankfurt/ZAFES, Klinikum der Johann Wolfgang Goethe-Universität, Frankfurt am Main, Germany.

出版信息

Cell Signal. 2013 Dec;25(12):2485-95. doi: 10.1016/j.cellsig.2013.08.003. Epub 2013 Aug 23.

DOI:10.1016/j.cellsig.2013.08.003
PMID:23978401
Abstract

The ubiquitous mRNA binding protein human antigen R (HuR) participates in the post-transcriptional regulation of many AU-rich element (ARE)-bearing mRNAs. Previously, by using in vitro kinase assay, we have identified serines (Ser) 158, 221 and 318 as targets of protein kinase C (PKC)-triggered phosphorylation. In this study, we tested whether GFP- or GST-tagged HuR constructs bearing a phosphomimetic Ser (S)-to-Asp (D) substitution at the different PKC target sites, would affect different HuR functions including HuR nucleo-cytoplasmic redistribution and binding to different types of ARE-containing mRNAs. The phosphomimetic GFP-tagged HuR protein bearing a phosphomimetic substitution in the hinge region of HuR (HuR-S221D) showed an increased cytoplasmic abundance when compared to wild-type HuR. Conversely, data from in vitro kinase assay and electrophoretic mobility shift assay (EMSA), implicates that phosphorylation at Ser 221 is not relevant for mRNA binding of HuR. Quantification of in vitro binding affinities of GST-tagged wild-type HuR and corresponding HuR proteins bearing a phosphomimetic substitution in either RRM2 (HuR-S158D) or in RRM3 (HuR-S318D) by microscale thermophoresis (MST) indicates a specific binding of wild-type HuR to type I, II or type III-ARE-oligonucleotides in the high nanomolar range. Interestingly, phosphomimetic mutation at position 158 or 318 had a negative influence on HuR binding to type I- and type II-ARE-mRNAs whereas it significantly enhanced HuR affinity to a type III-ARE substrate. Our data suggest that differential phosphorylation of HuR by PKCs at different HuR domains coordinates subcellular HuR distribution and leads to a preferential binding to U-rich bearing target mRNA.

摘要

普遍存在的mRNA结合蛋白人抗原R(HuR)参与许多富含AU元件(ARE)的mRNA的转录后调控。此前,通过体外激酶测定,我们已确定丝氨酸(Ser)158、221和318是蛋白激酶C(PKC)触发的磷酸化靶点。在本研究中,我们测试了在不同PKC靶点位点带有模拟磷酸化丝氨酸(S)到天冬氨酸(D)替换的GFP或GST标记的HuR构建体,是否会影响不同的HuR功能,包括HuR的核质重新分布以及与不同类型含ARE的mRNA的结合。与野生型HuR相比,在HuR铰链区带有模拟磷酸化替换的模拟磷酸化GFP标记的HuR蛋白(HuR-S221D)显示出细胞质丰度增加。相反,体外激酶测定和电泳迁移率变动分析(EMSA)的数据表明,Ser 221处的磷酸化与HuR的mRNA结合无关。通过微量热泳动(MST)对GST标记的野生型HuR和在RRM2(HuR-S158D)或RRM3(HuR-S318D)中带有模拟磷酸化替换的相应HuR蛋白的体外结合亲和力进行定量分析,结果表明野生型HuR与高纳摩尔范围内的I型、II型或III型ARE寡核苷酸具有特异性结合。有趣的是,158或318位点的模拟磷酸化突变对HuR与I型和II型ARE-mRNA的结合有负面影响,而它显著增强了HuR对III型ARE底物的亲和力。我们的数据表明,PKC在不同HuR结构域对HuR的差异性磷酸化协调了HuR在亚细胞中的分布,并导致其优先结合富含U的靶mRNA。

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