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Structural and biophysical properties of RIG-I bound to dsRNA with G-U wobble base pairs

机译:钻机的结构和生物物理性质与G-U摆动碱基对的DSRNA结合

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Retinoic acid-inducible gene I (RIG-I) is responsible for innate immunity via the recognition of short double-stranded RNAs in the cytosol. With the clue that G-U wobble base pairs in the influenza A virus's RNA promoter region are responsible for RIG-I activation, we determined the complex structure of RIG-I Delta CARD and a short hairpin RNA with G-U wobble base pairs by X-ray crystallography. Interestingly, the overall helical backbone trace was not affected by the presence of the wobble base pairs; however, the base pair inclination and helical axis angle changed upon RIG-I binding. NMR spectroscopy revealed that RIG-I binding renders the flexible base pair of the influenza A virus's RNA promoter region between the two G-U wobble base pairs even more flexible. Binding to RNA with wobble base pairs resulted in a more flexible RIG-I complex. This flexible complex formation correlates with the entropy-favoured binding of RIG-I and RNA, which results in tighter binding affinity and RIG-I activation. This study suggests that the structure and dynamics of RIG-I are tailored to the binding of specific RNA sequences with different flexibility.
机译:视黄酸诱导基因I(Rig-I)是通过在胞质溶胶中识别短的双链RNA的先天免疫原因。随着COMPOSENZ中的沟摆动碱对对病毒的RNA启动子区域负责钻机I激活的线索,我们确定了通过X射线晶体学用GU WOBBE碱对的复杂结构和带有GU WOBBE碱对的短发夹RNA 。有趣的是,整体螺旋骨架痕迹不受摆源碱对的存在影响;然而,基对倾斜和螺旋轴角度在钻井平台上改变。 NMR光谱揭示了钻石I结合使得柔性基对柔性基对柔性基对柔性的RNA启动子区域之间的柔性碱基对。与摇摆碱基对的与RNA结合,导致更柔韧的钻机 - I复合物。这种柔性复杂的形成与钻机I和RNA的熵相关结合相关,这导致更紧密的结合亲和力和钻井平台 - I活化。该研究表明,钻机I的结构和动态被定制为具有不同柔韧性的特定RNA序列的结合。

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