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Molecular dynamics simulations of Ago silencing complexes reveal a large repertoire of admissible ‘seed-less’ targets

机译:Ago沉默复合物的分子动力学模拟揭示了可容许的“无种子”靶标的大量组成

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To better understand the recognition mechanism of RISC and the repertoire of guide-target interactions we introduced G:U wobbles and mismatches at various positions of the microRNA (miRNA) ‘seed’ region and performed all-atom molecular dynamics simulations of the resulting Ago-miRNA:mRNA ternary complexes. Our simulations reveal that many modifications, including combinations of multiple G:U wobbles and mismatches in the seed region, are admissible and result in only minor structural fluctuations that do not affect overall complex stability. These results are further supported by analyses of HITS-CLIP data. Lastly, introduction of disruptive mutations revealed a bending motion of the PAZ domain along the L1/L2 ‘hinge’ and a subsequent opening of the nucleic-acid-binding channel. Our findings suggest that the spectrum of a miRNA's admissible targets is different from what is currently anticipated by the canonical seed-model. Moreover, they provide a likely explanation for the previously reported sequence-dependent regulation of unintended targeting by siRNAs.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:为了更好地了解RISC的识别机制和引导-靶相互作用的全部方法,我们在microRNA(miRNA)“种子”区域的各个位置引入了G:U摆动和错配,并对所得的Ago-进行了全原子分子动力学模拟miRNA:mRNA三元复合物。我们的模拟表明,许多修改是可以接受的,包括种子区域中多个G:U摆动和不匹配的组合,并且仅导致较小的结构波动,不会影响整体复杂的稳定性。对HITS-CLIP数据的分析进一步支持了这些结果。最后,破坏性突变的引入揭示了PAZ结构域沿着L1 / L2“铰链”的弯曲运动以及随后的核酸结合通道的开放。我们的发现表明,miRNA允许的靶标谱不同于规范种子模型当前预期的谱。而且,它们为先前报道的siRNA意外靶向的序列依赖性调节提供了可能的解释。 2012 Macmillan Publishers Limited。版权所有

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