Philosof-Mazor Liron, Volinsky Roman, Comin Maria J, Lewin Nancy E, Kedei Noemi, Blumberg Peter M, Marquez Victor E, Jelinek Raz
Department of Chemistry, Ben Gurion University, Beer Sheva 84105, Israel.
Langmuir. 2008 Oct 7;24(19):11043-52. doi: 10.1021/la802204n. Epub 2008 Sep 13.
Synthetic diacylglycerol lactones (DAG-lactones) have been shown to be effective modulators of critical cellular signaling pathways. The biological activity of these amphiphilic molecules depends in part upon their lipid interactions within the cellular plasma membrane. This study explores the thermodynamic and structural features of DAG-lactone derivatives and their lipid interactions at the air/water interface. Surface-pressure/area isotherms and Brewster angle microscopy revealed the significance of specific side-groups attached to the terminus of a very rigid 4-(2-phenylethynyl)benzoyl chain of the DAG-lactones, which affected both the self-assembly of the molecules and their interactions with phospholipids. The experimental data highlight the formation of different phases within mixed DAG-lactone/phospholipid monolayers and underscore the relationship between the two components in binary mixtures of different mole ratios. Importantly, the results suggest that DAG-lactones are predominantly incorporated within fluid phospholipid phases rather than in the condensed phases that form, for example, by cholesterol. Moreover, the size and charge of the phospholipid headgroups do not seem to affect DAG-lactone interactions with lipids.
合成二酰基甘油内酯(DAG-内酯)已被证明是关键细胞信号通路的有效调节剂。这些两亲性分子的生物活性部分取决于它们在细胞质膜内的脂质相互作用。本研究探讨了DAG-内酯衍生物的热力学和结构特征及其在空气/水界面的脂质相互作用。表面压力/面积等温线和布儒斯特角显微镜揭示了连接在DAG-内酯非常刚性的4-(2-苯乙炔基)苯甲酰链末端的特定侧基的重要性,这影响了分子的自组装及其与磷脂的相互作用。实验数据突出了混合DAG-内酯/磷脂单层中不同相的形成,并强调了不同摩尔比二元混合物中两种成分之间的关系。重要的是,结果表明DAG-内酯主要掺入流体磷脂相,而不是例如由胆固醇形成的凝聚相。此外,磷脂头部基团的大小和电荷似乎不影响DAG-内酯与脂质的相互作用。