Department of Biophysical Chemistry, J. Heyrovský Institute of Physical Chemistry of the CAS, Dolejškova 2155/3, 182 23 Prague, Czech Republic.
Mathematical Institute of Charles University, Faculty of Mathematics and Physics, Charles University, Sokolovská 49/83, 186 75 Prague, Czech Republic.
Biomolecules. 2022 Dec 17;12(12):1894. doi: 10.3390/biom12121894.
Biomembranes, important building blocks of living organisms, are often exposed to large local fluctuations of pH and ionic strength. To capture changes in the membrane organization under such harsh conditions, we investigated the mobility and hydration of zwitterionic and anionic lipid bilayers upon elevated HO and Ca content by the time-dependent fluorescence shift (TDFS) technique. While the zwitterionic bilayers remain inert to lower pH and increased calcium concentrations, anionic membranes are responsive. Specifically, both bilayers enriched in phosphatidylserine (PS) and phosphatidylglycerol (PG) become dehydrated and rigidified at pH 4.0 compared to at pH 7.0. However, their reaction to the gradual Ca increase in the acidic environment differs. While the PG bilayers exhibit strong rehydration and mild loosening of the carbonyl region, restoring membrane properties to those observed at pH 7.0, the PS bilayers remain dehydrated with minor bilayer stiffening. Molecular dynamics (MD) simulations support the strong binding of HO to both PS and PG. Compared to PS, PG exhibits a weaker binding of Ca also at a low pH.
生物膜是生物体的重要组成部分,它们经常会暴露在 pH 值和离子强度的大幅局部波动中。为了捕捉在这种恶劣条件下膜组织的变化,我们通过时间依赖荧光位移(TDFS)技术研究了在高 HO 和 Ca 含量下,两性离子和阴离子脂质双层的流动性和水合作用。虽然两性离子双层对较低的 pH 值和增加的钙离子浓度保持惰性,但阴离子膜是有反应的。具体来说,与 pH 值为 7.0 相比,富含磷脂酰丝氨酸(PS)和磷脂酰甘油(PG)的两种双层在 pH 值为 4.0 时会脱水和变僵硬。然而,它们对酸性环境中逐渐增加的 Ca 的反应不同。虽然 PG 双层表现出强烈的再水合作用和羰基区域的轻度松弛,使膜特性恢复到 pH 值为 7.0 时观察到的状态,但 PS 双层仍然保持脱水状态,双层略有变硬。分子动力学(MD)模拟支持 HO 与 PS 和 PG 的强结合。与 PS 相比,PG 即使在低 pH 值下,与 Ca 的结合也较弱。