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真核生物中微小RNA-靶标识别过程中AGO-RNA复合物的组装与分析

Assembly and analysis of eukaryotic Argonaute-RNA complexes in microRNA-target recognition.

作者信息

Gan Hin Hark, Gunsalus Kristin C

机构信息

Center for Genomics and Systems Biology, Department of Biology, New York University, 12 Waverly Place, New York, NY 10003, USA

Center for Genomics and Systems Biology, Department of Biology, New York University, 12 Waverly Place, New York, NY 10003, USA New York University Abu Dhabi, Abu Dhabi, UAE

出版信息

Nucleic Acids Res. 2015 Nov 16;43(20):9613-25. doi: 10.1093/nar/gkv990. Epub 2015 Oct 1.

Abstract

Experimental studies have uncovered a variety of microRNA (miRNA)-target duplex structures that include perfect, imperfect and seedless duplexes. However, non-canonical binding modes from imperfect/seedless duplexes are not well predicted by computational approaches, which rely primarily on sequence and secondary structural features, nor have their tertiary structures been characterized because solved structures to date are limited to near perfect, straight duplexes in Argonautes (Agos). Here, we use structural modeling to examine the role of Ago dynamics in assembling viable eukaryotic miRNA-induced silencing complexes (miRISCs). We show that combinations of low-frequency, global modes of motion of Ago domains are required to accommodate RNA duplexes in model human and C. elegans Ago structures. Models of viable miRISCs imply that Ago adopts variable conformations at distinct target sites that generate distorted, imperfect miRNA-target duplexes. Ago's ability to accommodate a duplex is dependent on the region where structural distortions occur: distortions in solvent-exposed seed and 3'-end regions are less likely to produce steric clashes than those in the central duplex region. Energetic analyses of assembled miRISCs indicate that target recognition is also driven by favorable Ago-duplex interactions. Such structural insights into Ago loading and target recognition mechanisms may provide a more accurate assessment of miRNA function.

摘要

实验研究发现了多种微小RNA(miRNA)-靶标双链体结构,包括完美、不完美和无种子双链体。然而,计算方法主要依赖于序列和二级结构特征,无法很好地预测不完美/无种子双链体的非经典结合模式,而且由于迄今为止解析的结构仅限于Argonaute(AGO)蛋白中近乎完美的直链双链体,其三级结构也尚未得到表征。在这里,我们使用结构建模来研究AGO动态变化在组装有活性的真核生物miRNA诱导沉默复合体(miRISC)中的作用。我们表明,在模拟的人类和秀丽隐杆线虫AGO结构中,需要AGO结构域的低频全局运动模式组合来容纳RNA双链体。有活性的miRISC模型表明,AGO在不同的靶位点采取可变构象,从而产生扭曲的、不完美的miRNA-靶标双链体。AGO容纳双链体的能力取决于发生结构扭曲的区域:与中央双链体区域相比,溶剂暴露的种子区域和3'端区域的扭曲产生空间冲突的可能性较小。对组装好的miRISC进行的能量分析表明,靶标识别也受到AGO-双链体有利相互作用的驱动。对AGO加载和靶标识别机制的这种结构见解可能会为miRNA功能提供更准确的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae8c/4787751/ad74328f7c3e/gkv990fig1.jpg

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