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Investigating biological systems using first principles Car–Parrinello molecular dynamics simulations

机译:使用第一原理研究生物系统Car–Parrinello分子动力学模拟

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Density functional theory (DFT)-based Car–Parrinello molecular dynamics (CPMD) simulations describe the time evolution of molecular systems without resorting to a predefined potential energy surface. CPMD and hybrid molecular mechanics/CPMD schemes have recently enabled the calculation of redox properties of electron transfer proteins in their complex biological environment. They provided structural and spectroscopic information on novel platinum-based anticancer drugs that target DNA, also setting the basis for the construction of force fields for the metal lesion. Molecular mechanics/CPMD also lead to mechanistic hypotheses for a variety of metalloenzymes. Recent advances that increase the accuracy of DFT and the efficiency of investigating rare events are further expanding the domain of CPMD applications to biomolecules.
机译:基于密度泛函理论(DFT)的Car-Parrinello分子动力学(CPMD)模拟描述了分子系统的时间演化,而无需借助预定义的势能面。 CPMD和混合分子力学/ CPMD方案最近使得能够在复杂的生物环境中计算电子转移蛋白的氧化还原特性。他们提供了靶向DNA的新型铂基抗癌药物的结构和光谱信息,也为构建金属病变的力场奠定了基础。分子力学/ CPMD也导致了各种金属酶的机理假说。提高DFT准确性和研究罕见事件效率的最新进展正在进一步将CPMD应用领域扩展到生物分子。

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