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首页> 外文期刊>RNA biology >The C-terminal RNA binding motif of HuR is a multi-functional domain leading to HuR oligomerization and binding to U-rich RNA targets
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The C-terminal RNA binding motif of HuR is a multi-functional domain leading to HuR oligomerization and binding to U-rich RNA targets

机译:HuR的C端RNA结合基序是一个多功能结构域,导致HuR寡聚并与富含U的RNA靶标结合

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摘要

Human antigen R (HuR) is a 32kDa protein with 3 RNA Recognition Motifs (RRMs), which bind to Adenylate and uridylate Rich Elements (AREs) of mRNAs. Whereas the N-terminal and central domains (RRM1 and RRM2) are essential for AREs recognition, little is known on the C-terminal RRM3 beyond its implication in HuR oligomerization and apoptotic signaling. We have developed a detergent-based strategy to produce soluble RRM3 for structural studies. We have found that it adopts the typical RRM fold, does not interact with the RRM1 and RRM2 modules, and forms dimers in solution. Our NMR measurements, combined with Molecular Dynamics simulations and Analytical Ultracentrifugation experiments, show that the protein dimerizes through a helical region that contains the conserved W261 residue. We found that HuR RRM3 binds to 5-mer U-rich RNA stretches through the solvent exposed side of its -sheet, located opposite to the dimerization site. Upon mimicking phosphorylation by the S318D replacement, RRM3 mutant shows less ability to recognize RNA due to an electrostatic repulsion effect with the phosphate groups. Our study brings new insights of HuR RRM3 as a domain involved in protein oligomerization and RNA interaction, both functions regulated by 2 surfaces on opposite sides of the RRM domain.
机译:人类抗原R(HuR)是一种32kDa蛋白,带有3个RNA识别基序(RRM),可与mRNA的腺苷酸结合并尿苷化富元素(AREs)。尽管N末端和中央结构域(RRM1​​和RRM2)对于ARE的识别至关重要,但除了对HuR寡聚化和凋亡信号的影响外,对C末端RRM3知之甚少。我们已经开发出一种基于洗涤剂的策略,以生产用于结构研究的可溶性RRM3。我们发现它采用典型的RRM折叠,不与RRM1和RRM2模块相互作用,并在溶液中形成二聚体。我们的NMR测量结果与分子动力学模拟和超离心分析实验相结合,表明该蛋白通过包含保守W261残基的螺旋区域二聚化。我们发现,HuR RRM3通过其-sheet的溶剂暴露侧(与二聚化位点相对)与5聚体富含U的RNA片段结合。通过S318D替代物模拟磷酸化后,由于具有磷酸基团的静电排斥作用,RRM3突变体显示出较小的识别RNA的能力。我们的研究带来了HuR RRM3作为参与蛋白质寡聚和RNA相互作用的域的新见解,这两个功能均受RRM域相对两侧的两个表面调控。

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