Department of Chemistry, University of Utah, Salt Lake City, Utah.
Department of Ophthalmology and Visual Sciences, John A. Moran Eye Center, University of Utah, Salt Lake City, Utah.
Biophys J. 2022 Jul 19;121(14):2730-2741. doi: 10.1016/j.bpj.2022.06.015. Epub 2022 Jun 16.
The unique attributes of very-long-chain polyunsaturated fatty acids (VLC-PUFAs), their long carbon chains (n > 24) and high degree of unsaturation, impart unique chemical and physical properties to this class of fatty acids. The changes imparted by VLC-PUFA 32:6 n-3 on lipid packing and the compression moduli of model membranes were evaluated from π-A isotherms of VLC-PUFA in 1,2-distearoyl-sn-3-glycero-phosphocholine (DSPC) lipid monolayers. To compare the attractive or repulsive forces between VLC-PUFA and DSPC lipid monolayers, the measured mean molecular areas (MMAs) were compared with the calculated MMAs of an ideal mixture of VLC-PUFA and DSPC. The presence of 0.1, 1, and 10 mol % VLC-PUFA shifted the π-A isotherm to higher MMAs of the lipids comprising the membrane and the observed positive deviations from ideal behavior of the mixed VLC-PUFA:DSPC monolayers correspond to repulsive forces between VLC-PUFAs and DSPC. The MMA of the VLC-PUFA component was estimated using the measured MMAs of DSPC of 47.1 ± 0.7 Å/molecule, to be 15,000, 1100, and 91 Å/molecule at 0.1, 1, and 10 mol % VLC-PUFA:DSPC mixtures, respectively. The large MMAs of VLC-PUFA suggest that the docosahexaenoic acid tail reinserts into the membrane and adopts a nonlinear structure in the membrane, which is most pronounced at 0.1 mol % VLC-PUFA. The presence of 0.1 mol % VLC-PUFA:DSPC also significantly increased the compression modulus of the membrane by 28 mN/m compared with a pure DSPC membrane. The influence of VLC-PUFA on lipid "flip-flop" was investigated by sum-frequency vibrational spectroscopy. The incorporation of 0.1 mol % VLC-PUFA increased the DSPC flip-flop rate fourfold. The fact that VLC-PUFA promotes lipid translocation is noteworthy as retinal membranes require a high influx of retinoids which may be facilitated by lipid flip-flop.
非常长链多不饱和脂肪酸(VLC-PUFA)具有独特的属性,其长碳链(n>24)和高度不饱和,赋予这类脂肪酸独特的化学和物理性质。通过 VLC-PUFA 32:6 n-3 对模型膜中脂质堆积和压缩模量的影响,从 VLC-PUFA 在 1,2-二硬脂酰-sn-3-甘油-磷酸胆碱(DSPC)脂质单层中的π-A 等温线进行评估。为了比较 VLC-PUFA 和 DSPC 脂质单层之间的吸引力或排斥力,将测量的平均分子面积(MMA)与 VLC-PUFA 和 DSPC 的理想混合物的计算 MMA 进行比较。在 0.1、1 和 10 mol% VLC-PUFA 存在下,脂质的 π-A 等温线向更高的 MMA 移动,并且观察到混合 VLC-PUFA:DSPC 单层中与理想行为的正偏差对应于 VLC-PUFA 和 DSPC 之间的排斥力。使用 DSPC 的测量 MMA(47.1 ± 0.7 Å/molecule)来估计 VLC-PUFA 组分的 MMA,在 0.1、1 和 10 mol% VLC-PUFA:DSPC 混合物中,分别为 15000、1100 和 91 Å/molecule。VLC-PUFA 的大 MMA 表明二十二碳六烯酸尾重新插入到膜中,并在膜中采用非线性结构,在 0.1 mol% VLC-PUFA 时最为明显。与纯 DSPC 膜相比,存在 0.1 mol% VLC-PUFA:DSPC 还使膜的压缩模量显著增加了 28 mN/m。通过和频振动光谱研究了 VLC-PUFA 对脂质“翻转”的影响。添加 0.1 mol% VLC-PUFA 将 DSPC 翻转速率增加了四倍。VLC-PUFA 促进脂质易位这一事实值得注意,因为视网膜膜需要大量视黄醇流入,这可能通过脂质翻转来促进。