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mRNA的开启子和关闭子:通过mRNA二级结构中的分子开关调节富含AU元件控制的mRNA稳定性

mRNA openers and closers: modulating AU-rich element-controlled mRNA stability by a molecular switch in mRNA secondary structure.

作者信息

Meisner Nicole-Claudia, Hackermüller Jörg, Uhl Volker, Aszódi András, Jaritz Markus, Auer Manfred

机构信息

Novartis Institutes for Biomedical Research Vienna, Discovery Technologies, Innovative Screening Technologies, Brunnerstrasse 59, 1235 Vienna, Austria.

出版信息

Chembiochem. 2004 Oct 4;5(10):1432-47. doi: 10.1002/cbic.200400219.

Abstract

Approximately 3 000 genes are regulated in a time-, tissue-, and stimulus-dependent manner by degradation or stabilization of their mRNAs. The process is mediated by interaction of AU-rich elements (AREs) in the mRNA's 3'-untranslated regions with trans-acting factors. AU-rich element-controlled genes of fundamentally different functional relevance depend for their activation on one positive regulator, HuR. Here we present a methodology to exploit this central regulatory process for specific manipulation of AU-rich element-controlled gene expression at the mRNA level. With a combination of single-molecule spectroscopy, computational biology, and molecular and cellular biochemistry, we show that mRNA recognition by HuR is dependent on the presentation of the sequence motif NNUUNNUUU in single-stranded conformation. The presentation of the HuR binding site in the mRNA secondary structure appears to act analogously to a regulatory on/off switch that specifically controls HuR access to mRNAs in cis. Based on this finding we present a methodology for manipulating ARE mRNA levels by actuating this conformational switch specifically in a target mRNA. Computationally designed oligonucleotides (openers) enhance the NNUUNNUUU accessibility by rearranging the mRNA conformation. Thereby they increase in vitro and endogenous HuR-mRNA complex formation which leads to specific mRNA stabilization (as demonstrated for TNFalpha and IL-2, respectively). Induced HuR binding both inside and outside the AU-rich element promotes functional IL-2 mRNA stabilization. This opener-induced mRNA stabilization mimics the endogenous IL-2 response to CD28 stimulation in human primary T-cells. We therefore propose that controlled modulation of the AU-rich element conformation by mRNA openers or closers allows message stabilization or destabilization in cis to be specifically triggered. The described methodology might provide a means for studying distinct pathways in a complex cellular network at the node of mRNA stability control. It allows ARE gene expression to be potentially silenced or boosted. This will be of particular value for drug-target validation, allowing the diseased phenotype to ameliorate or deteriorate. Finally, the mRNA openers provide a rational starting point for target-specific mRNA stability assays to screen for low-molecular-weight compounds acting as inhibitors or activators of an mRNA structure rearrangement.

摘要

大约3000个基因通过其mRNA的降解或稳定以时间、组织和刺激依赖的方式受到调控。该过程由mRNA 3'非翻译区中的富含AU元件(ARE)与反式作用因子的相互作用介导。功能相关性根本不同的富含AU元件控制的基因,其激活依赖于一种正向调节因子HuR。在此,我们提出一种方法,可在mRNA水平上利用这一核心调控过程对富含AU元件控制的基因表达进行特异性操纵。通过结合单分子光谱学、计算生物学以及分子和细胞生物化学,我们表明HuR对mRNA的识别取决于单链构象中序列基序NNUUNNUUU的呈现。mRNA二级结构中HuR结合位点的呈现似乎类似于一个调控开/关开关,可特异性地顺式控制HuR与mRNA的结合。基于这一发现,我们提出一种通过在靶mRNA中特异性激活这种构象开关来操纵ARE mRNA水平的方法。通过计算设计的寡核苷酸(开启子)通过重新排列mRNA构象来增强NNUUNNUUU的可及性。从而增加体外和内源性HuR - mRNA复合物的形成,这导致特异性mRNA稳定(分别针对TNFα和IL - 2进行了证明)。富含AU元件内外诱导的HuR结合促进功能性IL - 2 mRNA稳定。这种开启子诱导的mRNA稳定模拟了人原代T细胞中内源性IL - 2对CD28刺激的反应。因此,我们提出通过mRNA开启子或关闭子对富含AU元件构象进行可控调节可特异性触发顺式中的信息稳定或不稳定。所描述的方法可能为在mRNA稳定性控制节点处研究复杂细胞网络中的不同途径提供一种手段。它可使ARE基因表达潜在地沉默或增强。这对于药物靶点验证将具有特别价值,可使患病表型改善或恶化。最后,mRNA开启子为筛选作为mRNA结构重排抑制剂或激活剂的低分子量化合物的靶点特异性mRNA稳定性测定提供了一个合理的起点。

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