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Regulation of HuR structure and function by dihydrotanshinone-I

机译:Dihydrotanshinone-i对HUR结构和功能的调节

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摘要

The Human antigen R protein (HuR) is an RNA-binding protein that recognizes U/AU-rich elements in diverse RNAs through two RNA-recognition motifs, RRM1 and RRM2, and post-transcriptionally regulates the fate of target RNAs. The natural product dihydrotanshinone-I (DHTS) prevents the association of HuR and target RNAs in vitro and in cultured cells by interfering with the binding of HuR to RNA. Here, we report the structural determinants of the interaction between DHTS and HuR and the impact of DHTS on HuR binding to target mRNAs transcriptome-wide. NMR titration and Molecular Dynamics simulation identified the residues within RRM1 and RRM2 responsible for the interaction between DHTS and HuR. RNA Electromobility Shifts and Alpha Screen Assays showed that DHTS interacts with HuR through the same binding regions as target RNAs, stabilizing HuR in a locked conformation that hampers RNA binding competitively. HuR ribonucleoprotein immunoprecipitation followed by microarray (RIP-chip) analysis showed that DHTS treatment of HeLa cells paradoxically enriched HuR binding to mRNAs with longer 3' UTR and with higher density of U/AU-rich elements, suggesting that DHTS inhibits the association of HuR to weaker target mRNAs. In vivo, DHTS potently inhibited xenograft tumor growth in a HuR-dependent model without systemic toxicity.
机译:人抗原R蛋白(HUR)是一种RNA结合蛋白,其通过两个RNA识别基序,RRM1和RRM2识别不同RNA中的富含U / Au的元素,并且转录调节靶RNA的命运。天然产物二氢丹参酮-I(DHT方法)通过用的HuR到RNA结合干扰防止的HuR和在体外和在培养的细胞中靶RNA的关联。在这里,我们报告了DHTS和HUR之间的相互作用的结构决定因素以及DHTs对靶MRNA的影响对靶MRNA的影响。 NMR滴定和分子动力学模拟确定了RRM1和RRM2内的残留物,负责DHTS和HUR之间的相互作用。 RNA电能移位和α筛查结果表明,DHT通过与靶RNA相同的结合区域相互作用,稳定围绕竞争性地阻碍RNA结合的锁定构象。 HUR核糖核糖蛋白免疫沉淀,然后是微阵列(裂纹芯片)分析表明,DHTS治疗Hela细胞矛盾的富含HUR与MRNA的HEAR与MRNA相结合,具有较长的3'UTR,并且具有较高的U / AU-元素的密度,表明DHT抑制了HUR的关联到较弱的目标mRNA。在体内,DHTS在没有全身毒性的情况下效果抑制了异种移植肿瘤生长。

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