Takano Yu, Nakata Kazuto, Yonezawa Yasushige, Nakamura Haruki
Research Center for State-of-the-Art Functional Protein Analysis, Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Department of Frontier Sciences, Graduate School of Information Sciences, Hiroshima City University, 3-4-1 Ozuka-Higashi, Asa-Minami-Ku, Hiroshima, 731-3194, Japan.
J Comput Chem. 2016 May 5;37(12):1125-32. doi: 10.1002/jcc.24318. Epub 2016 Mar 4.
A massively parallel program for quantum mechanical-molecular mechanical (QM/MM) molecular dynamics simulation, called Platypus (PLATform for dYnamic Protein Unified Simulation), was developed to elucidate protein functions. The speedup and the parallelization ratio of Platypus in the QM and QM/MM calculations were assessed for a bacteriochlorophyll dimer in the photosynthetic reaction center (DIMER) on the K computer, a massively parallel computer achieving 10 PetaFLOPs with 705,024 cores. Platypus exhibited the increase in speedup up to 20,000 core processors at the HF/cc-pVDZ and B3LYP/cc-pVDZ, and up to 10,000 core processors by the CASCI(16,16)/6-31G** calculations. We also performed excited QM/MM-MD simulations on the chromophore of Sirius (SIRIUS) in water. Sirius is a pH-insensitive and photo-stable ultramarine fluorescent protein. Platypus accelerated on-the-fly excited-state QM/MM-MD simulations for SIRIUS in water, using over 4000 core processors. In addition, it also succeeded in 50-ps (200,000-step) on-the-fly excited-state QM/MM-MD simulations for the SIRIUS in water.
为阐明蛋白质功能,开发了一种名为鸭嘴兽(动态蛋白质统一模拟平台,Platypus)的用于量子力学-分子力学(QM/MM)分子动力学模拟的大规模并行程序。在K计算机(一台拥有705,024个核心、运算速度达10 PetaFLOPs的大规模并行计算机)上,针对光合反应中心的细菌叶绿素二聚体(DIMER)评估了鸭嘴兽在QM和QM/MM计算中的加速比和并行化率。在HF/cc-pVDZ和B3LYP/cc-pVDZ计算中,鸭嘴兽在多达20,000个核心处理器上实现了加速比的提升,在CASCI(16,16)/6-31G**计算中,在多达10,000个核心处理器上实现了加速比的提升。我们还对水中Sirius(天狼星)发色团进行了激发态QM/MM-MD模拟。Sirius是一种对pH不敏感且光稳定的群青荧光蛋白。鸭嘴兽在水中对Sirius进行实时激发态QM/MM-MD模拟时,使用超过4000个核心处理器实现了加速。此外,它还成功地对水中的Sirius进行了50皮秒(200,000步)的实时激发态QM/MM-MD模拟。