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Exploration of Free Energy Surfaces Across a Membrane Channel Using Metadynamics and Umbrella Sampling

机译:使用METADYNAMICS和伞采样探索膜通道跨膜通道的探索

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To reach their site of action, it is essential for antibiotic molecules to cross the bacterial outer membrane. The progress of enhanced sampling techniques in molecular dynamics simulations enables us to understand these translocations at an atomic level. To this end, calculations of free energy surfaces for these permeation processes are of key importance. Herein, we investigate the translocation of a variety of anionic solutes through the outer membrane pore OprO of the Gram-negative bacterium Pseudomonas aeruginosa using the metadynamics and umbrella sampling techniques at the all-atom level. Free energy calculations have been performed employing these two distinct methods in order to illustrate the difference in computed free energies, if any. The investigated solutes range from a single atomic chloride ion over a multiatomic monophosphate ion to a more bulky fosmidomycin antibiotic. The role of complexity of the permeating solutes in estimating accurate free energy profiles is demonstrated by performing extensive convergence analysis. For simple monatomic ions, good agreement between the well-tempered metadynamics and the umbrella sampling approaches is achieved, while for the permeation of the monophosphate ion differences start to appear. In the case of larger molecules such as fosmidomycin it is a tough challenge to achieve converged free energy profiles. This issue is mainly due to neglecting orthogonal degrees of freedom during the free energy calculations. Nevertheless, the freely driven metadynamics approach leads to clearly advantageous results. Additionally, atomistic insights of the translocation mechanisms of all three solutes are discussed.
机译:要到达他们的行动部位,对于抗生素分子至关重要的是穿过细菌外膜。分子动力学模拟中增强的采样技术的进展使我们能够在原子水平处了解这些易位。为此,对这些渗透过程的自由能表面的计算具有重要性。在此,我们通过在全原子水平下使用Metadynamics和伞采样技术来研究各种阴离子溶质的各种阴离子溶质。已经进行了采用这两个不同方法的自由能量计算,以说明计算机的自由能量的差异,如果有的话。所研究的溶质在多种子磷酸离子上以更庞大的氟哌霉素抗生素从单一原子氯离子。通过进行广泛的收敛分析,证明了渗透溶质溶质溶质的复杂性的作用。对于简单的单声科离子,实现了良好回火的元动力学和伞采样方法之间的良好一致性,同时为了渗透到单磷酸根离子差异开始。在诸如Fosmidomycin之类的较大分子的情况下,它是实现趋同的自由能谱的艰难挑战。这个问题主要是由于在自由能计算期间忽略了正交自由度。然而,自由驱动的元动力学方法导致显然有利的结果。另外,讨论了所有三种溶质的易位机制的原子识别。

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