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Accurate Flexible Fitting of High-Resolution Protein Structures into Cryo-Electron Microscopy Maps Using Coarse-Grained Pseudo-Energy Minimization

机译:使用粗粒化伪能量最小化将高分辨率蛋白质结构精确灵活地拟合到低温电子显微镜图中

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摘要

Cryo-electron microscopy (cryo-EM) has been widely used to explore conformational states of large biomolecular assemblies. The detailed interpretation of cryo-EM data requires the flexible fitting of a known high-resolution protein structure into a low-resolution cryo-EM map. To this end, we have developed what we believe is a new method based on a two-bead-per-residue protein representation, and a modified form of the elastic network model that allows large-scale conformational changes while maintaining pseudobonds and secondary structures. Our method minimizes a pseudo-energy which linearly combines various terms of the modified elastic network model energy with a cryo-EM-fitting score and a collision energy that penalizes steric collisions. Unlike previous flexible fitting efforts using the lowest few normal modes, our method effectively utilizes all normal modes so that both global and local structural changes can be fully modeled. We have validated our method for a diverse set of 10 pairs of protein structures using simulated cryo-EM maps with a range of resolutions and in the absence/presence of random noise. We have shown that our method is both accurate and efficient compared with alternative techniques, and its performance is robust to the addition of random noise. Our method is also shown to be useful for the flexible fitting of three experimental cryo-EM maps.
机译:低温电子显微镜(cryo-EM)已被广泛用于探索大型生物分子组装体的构象状态。对cryo-EM数据的详细解释要求将已知的高分辨率蛋白质结构灵活地拟合到低分辨率的cryo-EM图中。为此,我们开发了一种我们认为是基于每个残基两珠的蛋白质表示法以及一种弹性网络模型的改进形式的新方法,该模型允许大规模构象变化同时保持假键和二级结构。我们的方法最大程度地减少了伪能量,该伪能量将修改的弹性网络模型能量的各种项与低温EM拟合得分和碰撞能量(对空间碰撞产生不利影响)线性组合在一起。与以前使用最少的几个正常模式进行的灵活拟合工作不同,我们的方法有效地利用了所有正常模式,因此可以对全局和局部结构更改进行完全建模。我们已经使用模拟冷冻-EM图在一系列分辨率和不存在/存在随机噪声的情况下验证了针对十对蛋白质结构的多样化集合的方法。我们已经表明,与替代技术相比,我们的方法既准确又有效,并且其性能对于添加随机噪声也很可靠。我们的方法还被证明对于灵活地拟合三个实验低温电磁图很有用。

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