MacDonald R C, Simon S A, Baer E
Biochemistry. 1976 Feb 24;15(4):885-91. doi: 10.1021/bi00649a025.
The ionization and phase behavior of 1,2-dipalmitoyl-sn-glycero-3-phosphoserine have been investigated under a variety of condtions by several different methods. As measured by turbidity changes, the temperature of the crystal-liquid crystal phase transition of this lipid is influenced by pH and mono- and divalent cation concentrations. The pH-transition temperature curve is congruent with the curve relating temperature to the degree of ionization of the carboxyl group of the crystalline form. The transition temperature falls from an upper plateau of 72 degrees C at low pH values, where the carboxyl group is fully protonated, to a lower plateau of 55 degrees C at high pH values, where this group is fully ionized. The apparent pK (pH at 50% ionization) of the crystalline form shifts from 6.0 to 4.6 to 3.7 with an increase of NaCl concentration from 10(-3) to 0.1 to l.0 M, respectively. These observations are in accord with a simple theoretical analysis that utilizes diffuse double layer theory and the influence of surface potential on surface concentration of protons. In qualitative terms, an increase in electrolyte concentration reduces the surface potential, the result of which is a diminution of the surface-bulk pH difference and a lowering of the apparent pK. Assuming an area of 50 A2/molecule, the intrinsic pKa (apparent pK corrected for surface pH) of the carboxyl group is 2.7. A 1000-fold change of NaCl concentration produces a very large change in surface potential without influencing the transition temperature of the ionized form of the lipid.
通过几种不同方法,在多种条件下研究了1,2 - 二棕榈酰 - sn - 甘油 - 3 - 磷酸丝氨酸的电离和相行为。通过浊度变化测量,这种脂质的晶相 - 液晶相转变温度受pH值以及单价和二价阳离子浓度的影响。pH - 转变温度曲线与温度和晶型羧基电离程度关系的曲线一致。转变温度从低pH值时羧基完全质子化的72℃的较高平稳段,降至高pH值时该基团完全电离的55℃的较低平稳段。随着NaCl浓度从10⁻³增加到0.1再增加到1.0 M,晶型的表观pK(50%电离时的pH)分别从6.0变为4.6再变为3.7。这些观察结果与利用扩散双层理论以及表面电势对质子表面浓度影响的简单理论分析一致。定性地说,电解质浓度增加会降低表面电势,其结果是表面 - 本体pH差值减小,表观pK降低。假设每个分子面积为50 Ų,羧基的固有pKa(针对表面pH校正后的表观pK)为2.7。NaCl浓度1000倍的变化会使表面电势发生很大变化,而不影响脂质电离形式的转变温度。