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离子与磷脂的结合。钙与磷脂酰丝氨酸的相互作用。

Ion-binding to phospholipids. Interaction of calcium with phosphatidylserine.

作者信息

Hauser H, Darke A, Phillips M C

出版信息

Eur J Biochem. 1976 Feb 16;62(2):335-44. doi: 10.1111/j.1432-1033.1976.tb10165.x.

Abstract

The binding of Ca2+ to monolayers and bilayers of phosphatidylserine has been investigated as a function of pH, ionic strength (NaCl concentration) and Ca2+ concentration using surface and colloid chemical techniques. The molar ratio of lipid to bound calcium decreases to 2 as the Ca2+ concentration is increased to about 0.1 mM. At [Ca2+] greater than 0.1 mM a 1:1 complex is formed. The apparent binding constant Ka ranges from about approximately 10(6) - 10(4) l/mol depending on the Ca2+ concentration. After allowing for electrostatic effects and neighbour group interactions, the intrinsic binding constant Ki of the phosphorylserine polar group at pH 7 (I = 0.01 M), where it carries a net negative charge of one, is approximately 10(4) l/mol; consistent values for Ki were obtained using several independent approaches. Ka for Ca2+ binding decreases with increasing NaCl concentration because the monovalent cations compete with Ca2+ for the same binding site. Na+ and K+ are equally effective in displacing 45Ca2+ adsorbed to monolayers of phosphatidylserine, both with respect to the kinetics and the equilibrium of the displacement. Ka for the reaction between phosphatidylserine and monovalent cations is about 10(3)-fold smaller than that of Ca2+. An investigation of the binding of Mn2+ to phosphatidylserine by both surface chemical and nuclear magnetic resonance methods shows that this cation has a similar binding constant to that of Ca2+. The Ca2+-binding capabilities of monolayers containing only carboxyl groups (i.e. arachidic acid) and phosphodiester groups (i.e. dicetyl phosphate) have also been determined; the apparent pK for the - COOH group in monolayers is larger than or equal to 9 and that for the phosphodiester group is less than 4. Since these groups do not retain the same pK values when they are in close proximity in the phosphorylserine group, the relative contributions of the two groups to the binding of Ca2+ to phosphatidylserine is not obvious.

摘要

利用表面和胶体化学技术,研究了Ca2+与磷脂酰丝氨酸单层和双层的结合情况,考察了其与pH、离子强度(NaCl浓度)和Ca2+浓度的关系。随着Ca2+浓度增加至约0.1 mM,脂质与结合钙的摩尔比降至2。当[Ca2+]大于0.1 mM时,会形成1:1的复合物。表观结合常数Ka约在10(6) - 10(4) l/mol范围内,具体取决于Ca2+浓度。在考虑静电效应和相邻基团相互作用后,pH为7(I = 0.01 M)时,携带一个净负电荷的磷酰丝氨酸极性基团的固有结合常数Ki约为10(4) l/mol;使用几种独立方法获得了一致的Ki值。Ca2+结合的Ka随NaCl浓度增加而降低,因为单价阳离子与Ca2+竞争相同的结合位点。就置换动力学和平衡而言,Na+和K+在置换吸附于磷脂酰丝氨酸单层的45Ca2+方面效果相同。磷脂酰丝氨酸与单价阳离子反应的Ka比与Ca2+反应时小约10(3)倍。通过表面化学和核磁共振方法对Mn2+与磷脂酰丝氨酸结合情况的研究表明,该阳离子的结合常数与Ca2+相似。还测定了仅含羧基(即花生酸)和磷酸二酯基团(即十六烷基磷酸)的单层的Ca2+结合能力;单层中 - COOH基团的表观pK大于或等于9,磷酸二酯基团的表观pK小于4。由于这些基团在磷酰丝氨酸基团中紧密相邻时不会保持相同的pK值,因此这两个基团对Ca2+与磷脂酰丝氨酸结合的相对贡献并不明显。

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