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HADDOCK2.4 网页服务器用于生物分子复合物的整合建模。

The HADDOCK2.4 web server for integrative modeling of biomolecular complexes.

机构信息

Computational Structural Biology Group, Bijvoet Centre for Biomolecular Research, Department of Chemistry, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

Fluigent, Le Kremlin-Bicêtre, France.

出版信息

Nat Protoc. 2024 Nov;19(11):3219-3241. doi: 10.1038/s41596-024-01011-0. Epub 2024 Jun 17.

Abstract

Interactions between macromolecules, such as proteins and nucleic acids, are essential for cellular functions. Experimental methods can fail to provide all the information required to fully model biomolecular complexes at atomic resolution, particularly for large and heterogeneous assemblies. Integrative computational approaches have, therefore, gained popularity, complementing traditional experimental methods in structural biology. Here, we introduce HADDOCK2.4, an integrative modeling platform, and its updated web interface ( https://wenmr.science.uu.nl/haddock2.4 ). The platform seamlessly integrates diverse experimental and theoretical data to generate high-quality models of macromolecular complexes. The user-friendly web server offers automated parameter settings, access to distributed computing resources, and pre- and post-processing steps that enhance the user experience. To present the web server's various interfaces and features, we demonstrate two different applications: (i) we predict the structure of an antibody-antigen complex by using NMR data for the antigen and knowledge of the hypervariable loops for the antibody, and (ii) we perform coarse-grained modeling of PRC1 with a nucleosome particle guided by mutagenesis and functional data. The described protocols require some basic familiarity with molecular modeling and the Linux command shell. This new version of our widely used HADDOCK web server allows structural biologists and non-experts to explore intricate macromolecular assemblies encompassing various molecule types.

摘要

生物大分子(如蛋白质和核酸)之间的相互作用对于细胞功能至关重要。实验方法可能无法提供充分模拟生物分子复合物在原子分辨率下的所有信息,特别是对于大型和异质的复合物。因此,综合计算方法越来越受欢迎,在结构生物学中补充了传统的实验方法。在这里,我们介绍 HADDOCK2.4,这是一个综合建模平台及其更新的网络界面(https://wenmr.science.uu.nl/haddock2.4)。该平台无缝集成了各种实验和理论数据,以生成高质量的生物大分子复合物模型。用户友好的网络服务器提供自动化参数设置、对分布式计算资源的访问,以及增强用户体验的预处理和后处理步骤。为了展示网络服务器的各种界面和功能,我们演示了两个不同的应用程序:(i)我们使用抗原的 NMR 数据和抗体的高变环知识预测抗体-抗原复合物的结构,(ii)我们使用突变和功能数据指导核小体颗粒进行 PRC1 的粗粒化建模。描述的协议需要对分子建模和 Linux 命令外壳有一些基本的了解。我们这个广泛使用的 HADDOCK 网络服务器的新版本允许结构生物学家和非专家探索包含各种分子类型的复杂生物大分子组装体。

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