Stoica Ileana
National Research Council of Canada, Biotechnology Research Institute, 6100 Royalmount Avenue, Montréal, QC, H4P 2R2, Canada.
J Mol Model. 2005 Jun;11(3):210-25. doi: 10.1007/s00894-005-0255-8. Epub 2005 Apr 2.
Several attempts have been made to compute electron paramagnetic resonance (EPR) spectra of biomolecules, using motional models or simulated trajectories to describe dynamics. Ideally, the simulated trajectories should capture "fast" (picosecond) snapshots of spin-probe rotations accurately, while being lengthy enough to ensure a proper Fourier integration of the time-domain signal. It is the interplay of the two criteria that poses computational challenges to the method. In this context, an analysis of the spin-probe and protein conformational sampling and equilibration, with different force fields and with explicit solvent, may be a useful attempt. The present work reports a comparative study of the effect of the molecular dynamics (MD) force field on conformational sampling and equilibration in two spin-labeled T4 lysozyme (T4L) variants, N40C and K48C. Ensembles of 10x 3 ns-trajectories per variant and per force field (OPLS/AMBER and AMBER99) are analyzed for a reliable assessment of convergence and sampling. It is found that subtle site-dependent differences in spin-probe rotations and torsions are more readily captured in the AMBER99 trajectories than in the OPLS/AMBER simulations. On the other hand, sampling and equilibration are found to be better with the OPLS/AMBER force field at equal trajectory lengths.
人们已经进行了多次尝试,利用运动模型或模拟轨迹来描述动力学,从而计算生物分子的电子顺磁共振(EPR)光谱。理想情况下,模拟轨迹应准确捕捉自旋探针旋转的“快速”(皮秒)快照,同时长度要足够长,以确保对时域信号进行适当的傅里叶积分。正是这两个标准之间的相互作用给该方法带来了计算挑战。在这种情况下,使用不同的力场并结合显式溶剂对自旋探针和蛋白质构象采样及平衡进行分析,可能是一种有益的尝试。本研究报告了分子动力学(MD)力场对两种自旋标记的T4溶菌酶(T4L)变体N40C和K48C的构象采样和平衡影响的比较研究。对每个变体和每个力场(OPLS/AMBER和AMBER99)的10×3 ns轨迹集合进行分析,以可靠评估收敛性和采样情况。结果发现,与OPLS/AMBER模拟相比,AMBER99轨迹更容易捕捉到自旋探针旋转和扭转中细微的位点依赖性差异。另一方面,发现在相同轨迹长度下,OPLS/AMBER力场的采样和平衡效果更好。