Department of Chemistry, University of Dhaka, Dhaka, 1000, Bangladesh.
Department of Material and Environmental Sciences, Faculty of Engineering, Utsunomiya University, Yoto 7-1-2, Utsunomiya, 321-8585, Japan.
Chem Phys Lipids. 2021 Mar;235:105054. doi: 10.1016/j.chemphyslip.2021.105054. Epub 2021 Jan 26.
The interactions of l-arginine (l-arg) with Langmuir monolayers of three most common phospholipids, which are sodium salt of dipalmitoylphosphatidylglycerol (DPPG), dipalmitoylphosphatidylcholine (DPPC) and dipalmitoylphosphatidylethanolamine (DPPE), have been investigated at the air-water interface. The surface pressure-area (π-A) isotherms of these monolayers have been measured with a film balance and monolayer morphology has been observed by a Brewster angle microscopy (BAM). The DPPG monolayers on pure water do not show any phase transition but show irregular shaped condensed phases formed just after evaporation of the solvent at 20 °C. However, this monolayer on l-arg solution subphase indicates a first-order phase transition from liquid expanded to liquid condensed (LE-LC) phases and forms LC domains at the same temperature. With an increase in the l-arg concentration in the subphase up to 5.0 × 10 M, the π-A shows an overall increasingly greater expansion in the molecular area. All of the π-A isotherms recorded on ≥5.0 × 10 M l-arg solution subphases almost coincide with each other. These changes in the phase behavior have been explained by the fact that l-arg having guanidinium cationic group undergoes strong hydrogen bonding interaction with the anionic phosphatidylglycerol (PG-) head group. The bonding between two molecules is further strengthened by electrostatic attraction between cationic l-arg and anionic PG- ions. The BAM observation of the monolayer morphology supports this explanation. On the other hand, a very negligible interaction has been observed between l-arg and DPPC or DPPE monolayers. The π-A isotherms in the presence of l-arg for both the amphiphiles show a very little expansion only in the LE phase region, but coincide in the so called solid phase region. The monolayer morphology of both the monolayers also supports these results. This little effect of expansion in the LE region may be explained by the ion-pair formation between cationic l-arg and anionic head groups in the monolayers at lower pressures. However, due to compression at high pressure, the l-arg molecules are squeezed out from the amphiphile head groups.
精氨酸(l-arg)与三种最常见的磷脂的 Langmuir 单层之间的相互作用,即在气液界面上进行研究。使用薄膜天平测量了这些单层的表面压-面积(π-A)等温线,并通过布鲁斯特角显微镜(BAM)观察了单层形态。在 20°C 下,纯水中的 DPPG 单层不显示任何相转变,但在溶剂蒸发后立即显示出形成的不规则形状的凝聚相。然而,在 l-arg 溶液亚相中,该单层表明从液体膨胀到液体凝聚(LE-LC)相的一级相变,并在相同温度下形成 LC 域。随着亚相中 l-arg 浓度增加至 5.0×10-5M,π-A 显示出分子面积的整体逐渐增大的扩展。在≥5.0×10-5M l-arg 溶液亚相中记录的所有π-A 等温线几乎相互重合。这些相行为的变化可以通过以下事实来解释:具有胍阳离子基团的 l-arg 与阴离子磷脂酰甘油(PG-)头基发生强烈的氢键相互作用。两个分子之间的键通过阳离子 l-arg 和阴离子 PG-离子之间的静电吸引进一步加强。单层形态的 BAM 观察结果支持了这一解释。另一方面,在 l-arg 存在下,l-arg 与 DPPC 或 DPPE 单层之间观察到非常小的相互作用。在存在 l-arg 时,两种两亲物的π-A 等温线仅在 LE 相区域显示出非常小的扩展,但在所谓的固体相区域重合。两种单层的单层形态也支持这些结果。在 LE 区域中这种扩展的微小效应可能是由于在较低压力下阳离子 l-arg 和单层中的阴离子头基之间形成离子对。然而,由于高压下的压缩,l-arg 分子从两亲物的头基中挤出。