Brown Krystal L, Conboy John C
Department of Chemistry, University of Utah, 315 South 1400 East, RM 2020, Salt Lake City, Utah 84103, United States.
J Phys Chem B. 2015 Aug 13;119(32):10252-60. doi: 10.1021/acs.jpcb.5b05523. Epub 2015 Aug 4.
The kinetics and thermodynamics of 1,2-distearoyl-sn-glycero-3-[phospho(1'-rac-glycerol)] (DSPG) flip-flop in 1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC) membranes were examined by sum-frequency vibrational spectroscopy (SFVS). The effect of DSPG concentration in the membrane and the influence of electrolyte concentration were examined in an attempt to decipher the role the anionic PG headgroup plays in dictating the dynamics of PG flip-flop for this biologically important lipid species. DSPG flip-flop dynamics and the activation barrier to exchange were found to be directly dependent on the amount of DSPG present in the bilayer. Analysis of the activation free energy for DSPG flip-flop in mixed DSPG + DSPC bilayers reveals that charge repulsion between neighboring PG headgroups modulates the free energy barrier and subsequently, the rate of translocation. Specifically, when DSPG comprises a small portion of the bilayer, the electrostatic potential of neighboring PG lipids are effectively shielded from each other under high ionic strength conditions and little to no charge repulsion occurs. When DSPG lipids are close enough to experience charge repulsion from neighboring PG lipids, as in bilayers containing a large fraction of DSPG, or for bilayers in low ionic strength solutions, the influence of charge repulsion on the energetics of lipid flip-flop are measurable. For biological membranes, where the concentration of PG is relatively low, the neighboring PG lipids are spaced far enough apart that their anionic charges are effectively shielded, such that under physiological conditions the charged nature of the headgroup does little to modulate its lipid flip-flop energetics and corresponding rate of translocation.
通过和频振动光谱法(SFVS)研究了1,2 - 二硬脂酰 - sn - 甘油 - 3 - [磷酸(1'-外消旋甘油)](DSPG)在1,2 - 二硬脂酰 - sn - 甘油 - 3 - 磷酸胆碱(DSPC)膜中的翻转动力学和热力学。研究了膜中DSPG浓度的影响以及电解质浓度的影响,试图解读阴离子PG头部基团在决定这种具有生物学重要性的脂质物种的PG翻转动力学中所起的作用。发现DSPG的翻转动力学和交换的活化能垒直接取决于双层中DSPG的含量。对混合DSPG + DSPC双层中DSPG翻转的活化自由能分析表明,相邻PG头部基团之间的电荷排斥调节了自由能垒,进而调节了转运速率。具体而言,当DSPG在双层中占一小部分时,在高离子强度条件下,相邻PG脂质的静电势彼此有效屏蔽,几乎不发生电荷排斥。当DSPG脂质足够接近以经历来自相邻PG脂质的电荷排斥时,如在含有大部分DSPG的双层中,或在低离子强度溶液中的双层中,电荷排斥对脂质翻转能量学的影响是可测量的。对于生物膜,其中PG的浓度相对较低,相邻的PG脂质间隔足够远,以至于它们的阴离子电荷被有效屏蔽,使得在生理条件下,头部基团的带电性质对调节其脂质翻转能量学和相应的转运速率几乎没有作用。