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戈尔工和路径行走:亚纳米分辨率密度图的大分子建模工具。

Gorgon and pathwalking: macromolecular modeling tools for subnanometer resolution density maps.

机构信息

Verna and Marrs McLean Department of Biochemistry and Molecular Biology, National Center for Macromolecular Imaging, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Biopolymers. 2012 Sep;97(9):655-68. doi: 10.1002/bip.22065.

Abstract

The complex interplay of proteins and other molecules, often in the form of large transitory assemblies, are critical to cellular function. Today, X-ray crystallography and electron cryo-microscopy (cryo-EM) are routinely used to image these macromolecular complexes, though often at limited resolutions. Despite the rapidly growing number of macromolecular structures, few tools exist for modeling and annotating structures in the range of 3-10 Å resolution. To address this need, we have developed a number of utilities specifically targeting subnanometer resolution density maps. As part of the 2010 Cryo-EM Modeling Challenge, we demonstrated two of our latest de novo modeling tools, Pathwalking and Gorgon, as well as a tool for secondary structure identification (SSEHunter) and a new rigid-body/flexible fitting tool in Gorgon. In total, we submitted 30 structural models from ten different subnanometer resolution data sets in four of the six challenge categories. Each of our utlities produced accurate structural models and annotations across the various density maps. In the end, the utilities that we present here offer users a robust toolkit for analyzing and modeling protein structure in macromolecular assemblies at non-atomic resolutions.

摘要

蛋白质和其他分子的复杂相互作用,通常以大型瞬态组装体的形式存在,对细胞功能至关重要。如今,X 射线晶体学和电子冷冻电镜(cryo-EM)常用于成像这些大分子复合物,但通常分辨率有限。尽管越来越多的大分子结构,但很少有工具可用于建模和注释 3-10 Å 分辨率范围内的结构。为了满足这一需求,我们专门开发了一些针对亚纳米分辨率密度图的实用程序。作为 2010 年冷冻电镜建模挑战赛的一部分,我们展示了我们最新的两种从头建模工具 Pathwalking 和 Gorgon,以及一种用于二级结构识别的工具(SSEHunter)和 Gorgon 中的新刚体/柔性拟合工具。总的来说,我们在六个挑战类别中的四个类别中提交了来自十个不同亚纳米分辨率数据集的 30 个结构模型。我们的每个实用程序都在各种密度图上生成了准确的结构模型和注释。最终,我们在这里介绍的这些实用程序为用户提供了一个强大的工具包,用于在非原子分辨率下分析和建模大分子组装体中的蛋白质结构。

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