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Fast Implementation of the Nudged Elastic Band Method in AMBER

机译:快速实现琥珀色的闪烁弹性带法

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We present a fast implementation of the nudged elastic band (NEB) method into the particle mesh Ewald molecular dynamics module of the Amber software package for both central processing units (CPU) and graphics processing units (GPU). The accuracy of the new implementation has been validated for three cases: a conformational change of alanine dipeptide, the alpha-helix to beta-sheet transition in polyalanine, and a large conformational transition in the human 8-oxoguanine-DNA glycosylase with DNA complex (OGG1-DNA). Timing benchmark tests were performed on the explicitly solvated OGG1-DNA system containing similar to 50 000 atoms. The GPU-optimized implementation of NEB achieves a more than two orders of magnitude speedup compared with the previous CPU implementation performed with a two-core CPU processor. The speed and scalable features of this implementation will enable NEB applications on larger and more complex systems.
机译:我们将闪烁的弹性带(NEB)方法的快速实现进入琥珀色软件包的颗粒网EWALD分子动力学模块,用于中央处理单元(CPU)和图形处理单元(GPU)。 新实施的准确性已经验证了三种情况:丙氨酸二肽的构象变化,聚丙氨酸中的α-螺旋到β-薄片过渡,以及具有DNA复合物的人8-氧代甘氨酸-DNA糖基糖酶的大构象过渡( OGG1-DNA)。 对含有类似于50 000原子的明确溶解的OGG1-DNA系统进行定时基准测试。 与使用双核CPU处理器执行的以前的CPU实现相比,NEB的GPU优化实现达到了超过两个数量级加速度。 此实现的速度和可扩展功能将使NEB应用程序在较大且更复杂的系统上。

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