Macnamara Shev, Bersani Alberto M, Burrage Kevin, Sidje Roger B
Department of Mathematics and The Australian Centre in Bioinformatics, The University of Queensland, Brisbane 4072, Australia.
J Chem Phys. 2008 Sep 7;129(9):095105. doi: 10.1063/1.2971036.
Recently the application of the quasi-steady-state approximation (QSSA) to the stochastic simulation algorithm (SSA) was suggested for the purpose of speeding up stochastic simulations of chemical systems that involve both relatively fast and slow chemical reactions [Rao and Arkin, J. Chem. Phys. 118, 4999 (2003)] and further work has led to the nested and slow-scale SSA. Improved numerical efficiency is obtained by respecting the vastly different time scales characterizing the system and then by advancing only the slow reactions exactly, based on a suitable approximation to the fast reactions. We considerably extend these works by applying the QSSA to numerical methods for the direct solution of the chemical master equation (CME) and, in particular, to the finite state projection algorithm [Munsky and Khammash, J. Chem. Phys. 124, 044104 (2006)], in conjunction with Krylov methods. In addition, we point out some important connections to the literature on the (deterministic) total QSSA (tQSSA) and place the stochastic analogue of the QSSA within the more general framework of aggregation of Markov processes. We demonstrate the new methods on four examples: Michaelis-Menten enzyme kinetics, double phosphorylation, the Goldbeter-Koshland switch, and the mitogen activated protein kinase cascade. Overall, we report dramatic improvements by applying the tQSSA to the CME solver.
最近,有人建议将准稳态近似(QSSA)应用于随机模拟算法(SSA),以加速对涉及相对快速和慢速化学反应的化学系统的随机模拟[Rao和Arkin,《化学物理杂志》118, 4999 (2003)],进一步的工作导致了嵌套和慢尺度SSA。通过考虑表征系统的截然不同的时间尺度,然后基于对快速反应的合适近似仅精确推进慢速反应,可获得更高的数值效率。我们通过将QSSA应用于化学主方程(CME)直接求解的数值方法,特别是与Krylov方法结合应用于有限状态投影算法[Munsky和Khammash,《化学物理杂志》124, 044104 (2006)],对这些工作进行了大幅扩展。此外,我们指出了与(确定性)全QSSA(tQSSA)文献的一些重要联系,并将QSSA的随机类似物置于马尔可夫过程聚合的更一般框架内。我们在四个例子上展示了新方法:米氏酶动力学、双磷酸化、Goldbeter-Koshland开关和丝裂原活化蛋白激酶级联反应。总体而言,我们报告了将tQSSA应用于CME求解器带来的显著改进。