Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA, USA.
Department of Chemistry, Boston University, MA, USA.
J Mol Biol. 2021 May 28;433(11):166841. doi: 10.1016/j.jmb.2021.166841. Epub 2021 Feb 2.
Coarse-grained models have long been considered indispensable tools in the investigation of biomolecular dynamics and assembly. However, the process of simulating such models is arduous because unconventional force fields and particle attributes are often needed, and some systems are not in thermal equilibrium. Although modern molecular dynamics programs are highly adaptable, software designed for preparing all-atom simulations typically makes restrictive assumptions about the nature of the particles and the forces acting on them. Consequently, the use of coarse-grained models has remained challenging. Moltemplate is a file format for storing coarse-grained molecular models and the forces that act on them, as well as a program that converts moltemplate files into input files for LAMMPS, a popular molecular dynamics engine. Moltemplate has broad scope and an emphasis on generality. It accommodates new kinds of forces as they are developed for LAMMPS, making moltemplate a popular tool with thousands of users in computational chemistry, materials science, and structural biology. To demonstrate its wide functionality, we provide examples of using moltemplate to prepare simulations of fluids using many-body forces, coarse-grained organic semiconductors, and the motor-driven supercoiling and condensation of an entire bacterial chromosome.
粗粒化模型长期以来一直被认为是研究生物分子动力学和组装的不可或缺的工具。然而,由于需要非常规的力场和粒子属性,并且一些系统不在热平衡状态,因此模拟此类模型的过程非常艰巨。尽管现代分子动力学程序具有高度的适应性,但专为准备全原子模拟而设计的软件通常对粒子的性质和作用在它们上的力做出限制性假设。因此,粗粒化模型的使用仍然具有挑战性。Moltemplate 是一种用于存储粗粒化分子模型和作用在它们上的力的文件格式,以及一个将 moltemplate 文件转换为 LAMMPS(一种流行的分子动力学引擎)输入文件的程序。Moltemplate 具有广泛的范围和通用性。它为 LAMMPS 开发的新类型的力提供了支持,这使得 moltemplate 成为计算化学、材料科学和结构生物学领域数千名用户的流行工具。为了展示其广泛的功能,我们提供了使用 moltemplate 准备使用多体力、粗粒化有机半导体以及整个细菌染色体的马达驱动超螺旋和浓缩的流体模拟的示例。