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Rappertk: a versatile engine for discrete restraint-based conformational sampling of macromolecules

机译:Rappertk:多功能引擎,用于基于大分子的离散约束构象采样

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Background Macromolecular structures are modeled by conformational optimization within experimental and knowledge-based restraints. Discrete restraint-based sampling generates high-quality structures within these restraints and facilitates further refinement in a continuous all-atom energy landscape. This approach has been used successfully for protein loop modeling, comparative modeling and electron density fitting in X-ray crystallography. Results Here we present a software toolkit (Rapper tk ) which generalizes discrete restraint-based sampling for use in structural biology. Modular design and multi-layered architecture enables Rapper tk to sample conformations of any macromolecule at many levels of detail and within a variety of experimental restraints. Performance against a Cα-tracing benchmark shows that the efficiency has not suffered despite the overhead required by this flexibility. We demonstrate the toolkit's capabilities by building high-quality β-sheets and by introducing restraint-driven sampling. RNA sampling is demonstrated by rebuilding a protein-RNA interface. Ability to construct arbitrary ligands is used in sampling protein-ligand interfaces within electron density. Finally, secondary structure and shape information derived from EM are combined to generate multiple conformations of a protein consistent with the observed density. Conclusion Through its modular design and ease of use, Rapper tk enables exploration of a wide variety of interesting avenues in structural biology. This toolkit, with illustrative examples, is freely available to academic users from http://www-cryst.bioc.cam.ac.uk/~swanand/mysite/rtk/index.html webcite .
机译:背景大分子结构是通过在实验和基于知识的约束条件下进行构象优化来建模的。基于离散约束的采样在这些约束内生成高质量的结构,并有助于在连续的全原子能态中进行进一步的细化。该方法已成功用于X射线晶体学中的蛋白质环建模,比较建模和电子密度拟合。结果在这里,我们提出了一个软件工具包(Rapper tk),该工具包概括了用于结构生物学的基于约束的离散采样。模块化设计和多层体系结构使Rapper tk可以在许多细节层次和各种实验约束下,对任何大分子的构象进行采样。针对C α跟踪基准的性能表明,尽管这种灵活性需要开销,但效率并未受到影响。我们通过构建高质量的β-表和引入约束驱动的采样来证明工具包的功能。通过重建蛋白质-RNA界面可以证明RNA采样。构建任意配体的能力用于在电子密度范围内采样蛋白质-配体界面。最后,将源自EM的二级结构和形状信息进行组合,以生成与观察到的密度一致的蛋白质多个构象。结论Rapper tk通过其模块化设计和易用性,可以探索结构生物学中各种有趣的途径。该工具箱(带有说明性示例)可从http://www-cryst.bioc.cam.ac.uk/~swanand/mysite/rtk/index.html网站免费提供给学术用户。

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