Garcia de la Torre J, Ortega A, Perez Sanchez H E, Hernandez Cifre J G
Departamento de Quimica Fisica, Facultad de Quimica, Universidad de Murcia, 30071 Murcia, Spain.
Biophys Chem. 2005 Jul 1;116(2):121-8. doi: 10.1016/j.bpc.2005.03.005. Epub 2005 Apr 13.
A computer program, MULTIHYDRO, has been constructed for the calculation of hydrodynamic coefficients and other solution properties of multiple possible conformations of a bead model. With minimal additional programming to describe the model under study, this program interfaces efficiently with HYDRO for the calculation of solution properties, including hydrodynamic coefficients, radius of gyration, covolume, etc. A useful application is the conformation search of rigid macromolecules, because many possible conformations can be evaluated in a single run of the program. In this paper we also pay attention to the properties of flexible macromolecules, in the so-called Monte Carlo rigid-body approximation, which is virtually exact for the simpler solution properties. The theoretical aspects of the procedure are described, and we show how MULTIHYDRO can be employed for this calculation. However, for flexible molecules, a more general simulation scheme is importance-sampling Monte Carlo generation. We describe how this procedure is implemented in another computer program, MONTEHYDRO. Examples of the usage of these tools are provided.
已构建了一个名为MULTIHYDRO的计算机程序,用于计算珠子模型多种可能构象的流体动力学系数及其他溶液性质。只需进行最少的额外编程来描述所研究的模型,该程序就能与HYDRO高效对接,以计算溶液性质,包括流体动力学系数、回转半径、共体积等。一个有用的应用是刚性大分子的构象搜索,因为在程序的单次运行中可以评估许多可能的构象。在本文中,我们还关注柔性大分子在所谓蒙特卡罗刚体近似下的性质,对于较简单的溶液性质,这种近似实际上是精确的。描述了该过程的理论方面,并展示了如何将MULTIHYDRO用于此计算。然而,对于柔性分子,更通用的模拟方案是重要性抽样蒙特卡罗生成。我们描述了该过程在另一个计算机程序MONTEHYDRO中的实现方式。提供了这些工具的使用示例。