Schneider Olaf, Fogh Rasmus H, Sternberg Ulrich, Klenin Konstantin, Kondov Ivan
Steinbuch Centre for Computing, Karlsruhe Institute of Technology, Germany.
Stud Health Technol Inform. 2012;175:162-72.
The Collaborative Computing Project for NMR (CCPN) has build a software framework consisting of the CCPN data model (with APIs) for NMR related data, the CcpNmr Analysis program and additional tools like CcpNmr FormatConverter. The open architecture allows for the integration of external software to extend the abilities of the CCPN framework with additional calculation methods. Recently, we have carried out the first steps for integrating our software Computer Simulation of Molecular Structures (COSMOS) into the CCPN framework. The COSMOS-NMR force field unites quantum chemical routines for the calculation of molecular properties with a molecular mechanics force field yielding the relative molecular energies. COSMOS-NMR allows introducing NMR parameters as constraints into molecular mechanics calculations. The resulting infrastructure will be made available for the NMR community. As a first application we have tested the evaluation of calculated protein structures using COSMOS-derived 13C Cα and Cβ chemical shifts. In this paper we give an overview of the methodology and a roadmap for future developments and applications.
核磁共振协作计算项目(CCPN)构建了一个软件框架,该框架由用于核磁共振相关数据的CCPN数据模型(及其应用程序编程接口)、CcpNmr分析程序以及诸如CcpNmr格式转换器等其他工具组成。其开放架构允许集成外部软件,以通过额外的计算方法扩展CCPN框架的功能。最近,我们已迈出将我们的软件“分子结构计算机模拟”(COSMOS)集成到CCPN框架中的第一步。COSMOS-NMR力场将用于计算分子性质的量子化学程序与产生相对分子能量的分子力学力场结合在一起。COSMOS-NMR允许将核磁共振参数作为约束条件引入分子力学计算中。由此产生的基础设施将提供给核磁共振领域的研究人员。作为首个应用,我们已测试了使用源自COSMOS的13C Cα和Cβ化学位移对计算得到的蛋白质结构进行评估。在本文中,我们概述了该方法以及未来发展和应用的路线图。