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Modeling Pseudomonas aeruginosa inner plasma membrane in planktonic and biofilm modes

机译:铜绿假单胞菌在浮游生物和生物膜模式中建模铜绿假单胞菌膜

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Pseudomonas aeruginosa changes its growth modes under different conditions. The bacteria in biofilm is more resistant to environmental stress compared to the planktonic mode of growth. The compositions of the inner plasma membrane for the two modes are noticeably different. Major lipid types are chosen from experiment to model the membrane in both modes of growth, and molecular dynamics simulation is used to study the properties of the membrane. The CHARMM36 lipid force field is used and tested against several experimental results. Our models include lipids containing cyclopropane in the middle of the sn-2 tail, namely, 1-palmitoy1-2-cis-11,12-methylene-stearic-acidsn-glycero-3-phosphoethanolamine and 1-palmitoy1-2-cis-11,12-methylene-stearic-acid-sn-glycero3-phosphoglycerol. The PE:PG ratio for the two model membranes is close, but the fraction of lipids composed of long-chain and cyclopropane-containing fatty acids changes significantly, causing differences between the two models. Compared to previous model membranes built for Escherichia coli, the inner membrane of P. aeruginosa has a longer averaged lipid tail length and a higher percentage of PG lipids, which are responsible for the changes in membrane properties like membrane thickness and stiffness. Most importantly, the comparison to experiments shows good agreements and encourages the model's use to study the behavior of proteins from P. aeruginosa associated with the membrane. Published by AIP Publishing.
机译:假单胞菌铜绿假单胞菌在不同条件下改变其生长模式。与浮游生素的生长模式相比,生物膜的细菌更耐环境应力。两种模式的内浆膜的组合物明显不同。从实验中选择主要脂质类型以在两种生长模式中模拟膜,而分子动力学模拟用于研究膜的性质。使用CharmM36脂质力场并测试若干实验结果。我们的模型包括含有含有环丙烷的脂质,在SN-2尾部中间,即1-palmItoy1-2-cis-11,12-亚甲基硬脂酸乙酯-12-甲基 - 磷酸乙醇胺和1-palmitoy1-2-cis- 11,12-亚甲基硬脂酸-NA-甘油3-磷糖。 PE:两种模型膜的PG比是近的,但由长链和含环丙烷的脂肪酸组成的脂质的分数显着变化,导致两种模型之间的差异。与针对大肠杆菌的先前模型膜相比,P.铜绿假单胞菌的内膜具有较长的平均脂尾长和较高的PG脂质百分比,这对膜厚度和刚度等膜特性的变化负责。最重要的是,与实验的比较显示了良好的协议,并鼓励模型用于研究与膜相关的铜绿假单胞菌的蛋白质的行为。通过AIP发布发布。

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