Giudice Emmanuel, Lavery Richard
Laboratoire de Biochimie Théorique, CNRS UPR 9080, Institut de Biologie Physico-Chimique, 13, rue Pierre et Marie Curie, Paris 75005, France.
Acc Chem Res. 2002 Jun;35(6):350-7. doi: 10.1021/ar010023y.
Recent years have seen considerable progress in simulations of nucleic acids. Improvements in force fields, simulation techniques and protocols, and increasing computer power have all contributed to making nanosecond-scale simulations of both DNA and RNA commonplace. The results are already helping to explain how nucleic acids respond to their environment and to their base sequence and to reveal the factors underlying recognition processes by probing biologically important nucleic acid-protein interactions and medically important nucleic acid-drug complexation. This Account summarizes methodological progress and applications of molecular dynamics to nucleic acids over the past few years and tries to identify remaining challenges.
近年来,核酸模拟取得了长足进展。力场、模拟技术和协议的改进,以及计算机能力的不断提升,都促使DNA和RNA的纳秒级模拟变得司空见惯。这些结果已经有助于解释核酸如何响应其环境和碱基序列,并通过探究具有生物学重要性的核酸-蛋白质相互作用以及具有医学重要性的核酸-药物络合作用,揭示识别过程背后的因素。本综述总结了过去几年分子动力学在核酸研究方面的方法进展和应用,并试图找出尚存的挑战。