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Web-Based Computational Chemistry Education with CHARMMing II: Coarse-Grained Protein Folding

机译:使用CHARMMing II的基于Web的计算化学教育:粗粒蛋白质折叠

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A lesson utilizing a coarse-grained (CG) G-like model has been implemented into the CHARMM INterface and Graphics (CHARMMing) web portal (www.charmming.org) to the Chemistry at HARvard Macromolecular Mechanics (CHARMM) molecular simulation package. While widely used to model various biophysical processes, such as protein folding and aggregation, CG models can also serve as an educational tool because they can provide qualitative descriptions of complex biophysical phenomena for a relatively cheap computational cost. As a proof of concept, this lesson demonstrates the construction of a CG model of a small globular protein, its simulation via Langevin dynamics, and the analysis of the resulting data. This lesson makes connections between modern molecular simulation techniques and topics commonly presented in an advanced undergraduate lecture on physical chemistry. It culminates in a straightforward analysis of a short dynamics trajectory of a small fast folding globular protein; we briefly describe the thermodynamic properties that can be calculated from this analysis. The assumptions inherent in the model and the data analysis are laid out in a clear, concise manner, and the techniques used are consistent with those employed by specialists in the field of CG modeling. One of the major tasks in building the G-like model is determining the relative strength of the nonbonded interactions between coarse-grained sites. New functionality has been added to CHARMMing to facilitate this process. The implementation of these features into CHARMMing helps automate many of the tedious aspects of constructing a CG G model. The CG model builder and its accompanying lesson should be a valuable tool to chemistry students, teachers, and modelers in the field.
机译:哈佛大学高分子力学(CHARMM)分子模拟软件包的CHARMM接口和图形(CHARMMing)网站门户(www.charmming.org)已实施了使用类似粗粒(CG)G模型的课程。 CG模型虽然广泛用于为各种生物物理过程(例如蛋白质折叠和聚集)建模,但它也可以作为一种教育工具,因为它们可以相对便宜的计算成本提供复杂生物物理现象的定性描述。作为概念的证明,本课演示了小球蛋白的CG模型的构建,通过Langevin动力学进行的模拟以及对所得数据的分析。本课将现代分子模拟技术与在物理化学高级本科课程中通常介绍的主题联系起来。它以对快速折叠的小球状蛋白的短动力学轨迹的直接分析为最终结果;我们简要描述了可以从该分析计算出的热力学性质。模型和数据分析中固有的假设以清晰,简洁的方式列出,并且所使用的技术与CG建模领域的专家所采用的技术一致。建立类似G的模型的主要任务之一是确定粗粒位点之间非键合相互作用的相对强度。 CHARMMing中已添加了新功能,以简化此过程。将这些功能实现到CHARMMing中有助于自动化构建CG G模型的许多繁琐方面。 CG模型构建者及其随附的课程对于该领域的化学专业学生,教师和建模者而言,应该是一个有价值的工具。

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