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PRISM-EM: template interface-based modelling of multi-protein complexes guided by cryo-electron microscopy density maps

机译:PRISM-EM:在冷冻电子显微镜密度图的指导下基于模板界面的多蛋白复合物建模

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摘要

The structures of protein assemblies are important for elucidating cellular processes at the molecular level. Three-dimensional electron microscopy (3DEM) is a powerful method to identify the structures of assemblies, especially those that are challenging to study by crystallography. Here, a new approach, PRISM-EM, is reported to computationally generate plausible structural models using a procedure that combines crystallographic structures and density maps obtained from 3DEM. The predictions are validated against seven available structurally different crystallographic complexes. The models display mean deviations in the backbone of <5 Å. PRISM-EM was further tested on different benchmark sets; the accuracy was evaluated with respect to the structure of the complex, and the correlation with EM density maps and interface predictions were evaluated and compared with those obtained using other methods. PRISM-EM was then used to predict the structure of the ternary complex of the HIV-1 envelope glycoprotein trimer, the ligand CD4 and the neutralizing protein m36.
机译:蛋白质组装体的结构对于在分子水平阐明细胞过程非常重要。三维电子显微镜(3DEM)是识别装配体结构的有效方法,尤其是那些难以通过晶体学研究的装配体。在这里,据报道有一种新方法PRISM-EM,它使用结合了晶体结构和从3DEM获得的密度图的程序来计算生成合理的结构模型。这些预测是针对七个可用的结构上不同的晶体配合物进行验证的。这些模型显示的主干中的平均偏差为<5Å。 PRISM-EM在不同的基准测试集上进行了进一步测试;评估了配合物结构的准确性,并评估了与EM密度图和界面预测的相关性,并将其与使用其他方法获得的相关性进行了比较。然后使用PRISM-EM预测HIV-1包膜糖蛋白三聚体,配体CD4和中和蛋白m36的三元复合物的结构。

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