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通过冷冻电镜密度评估疱疹病毒VP26核心结构域的从头建模。

Ab initio modeling of the herpesvirus VP26 core domain assessed by CryoEM density.

作者信息

Baker Matthew L, Jiang Wen, Wedemeyer William J, Rixon Frazer J, Baker David, Chiu Wah

机构信息

National Center for Macromolecular Imaging, Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas, United States of America.

出版信息

PLoS Comput Biol. 2006 Oct 27;2(10):e146. doi: 10.1371/journal.pcbi.0020146. Epub 2006 Sep 27.

Abstract

Efforts in structural biology have targeted the systematic determination of all protein structures through experimental determination or modeling. In recent years, 3-D electron cryomicroscopy (cryoEM) has assumed an increasingly important role in determining the structures of these large macromolecular assemblies to intermediate resolutions (6-10 A). While these structures provide a snapshot of the assembly and its components in well-defined functional states, the resolution limits the ability to build accurate structural models. In contrast, sequence-based modeling techniques are capable of producing relatively robust structural models for isolated proteins or domains. In this work, we developed and applied a hybrid modeling approach, utilizing cryoEM density and ab initio modeling to produce a structural model for the core domain of a herpesvirus structural protein, VP26. Specifically, this method, first tested on simulated data, utilizes the cryoEM density map as a geometrical constraint in identifying the most native-like models from a gallery of models generated by ab initio modeling. The resulting model for the core domain of VP26, based on the 8.5-A resolution herpes simplex virus type 1 (HSV-1) capsid cryoEM structure and mutational data, exhibited a novel fold. Additionally, the core domain of VP26 appeared to have a complementary interface to the known upper-domain structure of VP5, its cognate binding partner. While this new model provides for a better understanding of the assembly and interactions of VP26 in HSV-1, the approach itself may have broader applications in modeling the components of large macromolecular assemblies.

摘要

结构生物学领域的研究致力于通过实验测定或建模系统地确定所有蛋白质结构。近年来,三维电子冷冻显微镜(cryoEM)在确定这些大型大分子组装体的结构以达到中等分辨率(6 - 10埃)方面发挥着越来越重要的作用。虽然这些结构提供了处于明确功能状态下的组装体及其组件的快照,但分辨率限制了构建精确结构模型的能力。相比之下,基于序列的建模技术能够为分离的蛋白质或结构域生成相对可靠的结构模型。在这项工作中,我们开发并应用了一种混合建模方法,利用冷冻电镜密度和从头建模来生成疱疹病毒结构蛋白VP26核心结构域的结构模型。具体而言,该方法首先在模拟数据上进行测试,利用冷冻电镜密度图作为几何约束,从从头建模生成的一系列模型中识别出最接近天然状态的模型。基于8.5埃分辨率的单纯疱疹病毒1型(HSV - 1)衣壳冷冻电镜结构和突变数据生成的VP26核心结构域模型展现出一种新颖的折叠形式。此外,VP26的核心结构域似乎与它的同源结合伴侣VP5的已知上部结构域有互补界面。虽然这个新模型有助于更好地理解HSV - 1中VP26的组装和相互作用,但该方法本身可能在大型大分子组装体组件的建模中有更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60e8/1626159/0dbe7970a919/pcbi.0020146.g001.jpg

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