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Molecular structures of fluid phase phosphatidylglycerol bilayers as determined by small angle neutron and X-ray scattering

机译:通过小角度中子和X射线散射测定的流体相磷磷脂基甘油双层的分子结构

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摘要

We have determined the molecular structures of commonly used phosphatidylglycerols (PGs) in the commonly accepted biologically relevant fluid phase. This was done by simultaneously analyzing small angle neutron and X-ray scattering data, with the constraint of measured lipid volumes. We report the temperature dependence of bilayer parameters obtained using the one-dimensional scattering density profile model – which was derived from molecular dynamics simulations – including the area per lipid, the overall bilayer thickness, as well as other intrabilayer parameters (e.g., hydrocarbon thickness). Lipid areas are found to be larger than their phosphatidylcholine (PC) counterparts, a result likely due to repulsive electrostatic interactions taking place between the charged PG headgroups even in the presence of sodium counterions. In general, PG and PC bilayers show a similar response to changes in temperature and chain length, but differ in their response to chain unsaturation. For example, compared to PC bilayers, the inclusion of a first double bond in PG lipids results in a smaller incremental change to the area per lipid and bilayer thickness. However, the extrapolated lipid area of saturated PG lipids to infinite chain length is found to be similar to that of PCs, an indication of the glycerol–carbonyl backbone's pivotal role in influencing the lipid–water interface.
机译:我们已经确定了常用的磷脂酰甘油(PGS)的分子结构在普通接受的生物相关的流体相中。这是通过同时分析小角度中子和X射线散射数据来完成的,具有测量的脂质体积的约束。我们报告了使用一维散射密度型材模型获得的双层参数的温度依赖性 - 这是来自分子动力学模拟的 - 包括每脂质的区域,整个双层厚度以及其他内裤参数(例如,烃厚度) 。发现脂质区域大于它们的磷脂酰胆碱(PC)对应物,其甚至在充电的PG头组之间发生的驱动静电相互作用,即使在钠抗体存在下也可能导致。通常,PG和PC双层显示出与温度和链长的变化相似的响应,但在对链不饱和度的响应中不同。例如,与PC双层相比,在PG脂质中包含第​​一双键导致较小的增量变化对每个脂质和双层厚度的区域。然而,发现饱和PG脂质的外推脂质面积与无限链长度相似,类似于PCS的致甘油 - 羰基骨架在影响脂质水界面方面的关键作用的指示。

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