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New CHARMM force field parameters for dehydrated amino acid residues, the key to lantibiotic molecular dynamics simulations

机译:脱水氨基酸残基的新CHARMM力场参数,羊毛硫抗生素分子动力学模拟的关键

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摘要

Lantibiotics are an important class of naturally occurring antimicrobial peptides containing unusual dehydrated amino acid residues. In order to enable molecular dynamics simulations of lantibiotics, we have developed empirical force field parameters for dehydroalanine and dehydrobutyrine, which are compatible with the CHARMM all-atom force field. The parameters reproduce the geometries and energy barriers from MP2/6-31G*//MP2/cc-pVTZ quantum chemistry calculations. Experimental, predicted and calculated NMR chemical shifts for the amino protons and alpha-, beta- and carbonyl carbon atoms of the dehydrated residues are consistent with a significant charge redistribution. The new parameters are used to perform the first molecular dynamics simulations of nisin, a widely used but poorly understood lantibiotic, in an aqueous environment and in a phospholipid bilayer. The simulations show surface association of the peptide with membranes in agreement with solid state NMR data and formation of beta-turns in agreement with solution NMR.
机译:羊毛硫抗生素是一类重要的天然抗菌肽,含有不寻常的脱水氨基酸残基。为了进行羊毛硫抗生素的分子动力学模拟,我们开发了脱氢丙氨酸和脱氢丁酸的经验力场参数,这些参数与CHARMM全原子力场兼容。这些参数从MP2 / 6-31G * // MP2 / cc-pVTZ量子化学计算中再现了几何形状和能垒。实验,预测和计算得出的脱水残基的氨基质子,α-,β-和羰基碳原子的NMR化学位移与电荷的明显重新分布是一致的。新参数用于在水性环境和磷脂双层中执行乳酸链球菌素(乳酸链球菌素)的第一个分子动力学模拟,乳酸链球菌素是一种广泛使用的但尚不为人所知的羊毛硫抗生素。模拟显示与固态NMR数据一致的肽与膜的表面缔合以及与溶液NMR一致的β-转角的形成。

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