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配体与血清脂蛋白的pH依赖性结合。

pH dependent binding of ligands to serum lipoproteins.

作者信息

Simon N, Dailly E, Jolliet P, Tillement J P, Urien S

机构信息

Laboratoire de Pharmacologie, Faculté de Médecine, Université, Paris XII, France.

出版信息

Pharm Res. 1997 Apr;14(4):527-32. doi: 10.1023/a:1012120104615.

Abstract

PURPOSE

The binding interactions of binedaline, nicardipine and darodipine with lipoproteins (HDL, LDL, VLDL) were examined as a function of pH in order to evaluate the role of lipoprotein components and ligand protonation in the binding process.

METHODS

Binding studies were performed by equilibrium dialysis with radiolabeled ligands and differential UV-visible spectroscopy.

RESULTS

Deprotonated ligands had a markedly higher affinity for lipoproteins than the protonated forms, resulting in a concomitant decrease in the pKa of bound ligands, i.e., a decrease in the basicity of the ligand in the bound state. The UV-visible difference spectra generated upon binding of auramine O to lipoproteins also showed that there was a contribution to the binding arising from the deprotonation of the ligand. Ligand binding was related to the phospholipid and cholesteryl ester content and to a lesser degree to the free cholesterol and protein content of lipoproteins, therefore to the surface monolayer components of lipoproteins. This relationship was even more accurate for the deprotonated, high-affinity, than for the protonated species.

CONCLUSIONS

It is suggested that among other possible interactions, ligand binding to lipoproteins involves proton exchange between the reactants and that the high affinity ligand species interact more specifically with the phospholipids of the lipoprotein surface monolayer.

摘要

目的

研究宾达利、尼卡地平和达罗地平与脂蛋白(高密度脂蛋白、低密度脂蛋白、极低密度脂蛋白)的结合相互作用随pH的变化情况,以评估脂蛋白成分和配体质子化在结合过程中的作用。

方法

采用放射性标记配体的平衡透析法和差分紫外可见光谱法进行结合研究。

结果

去质子化的配体对脂蛋白的亲和力明显高于质子化形式,导致结合配体的pKa随之降低,即结合状态下配体的碱性降低。金胺O与脂蛋白结合时产生的紫外可见差光谱也表明,配体的去质子化对结合有贡献。配体结合与脂蛋白的磷脂和胆固醇酯含量有关,与游离胆固醇和蛋白质含量的关系较小,因此与脂蛋白的表面单层成分有关。这种关系对于去质子化的高亲和力配体比对于质子化物种更为准确。

结论

提示在其他可能的相互作用中,配体与脂蛋白的结合涉及反应物之间的质子交换,并且高亲和力配体物种与脂蛋白表面单层的磷脂相互作用更具特异性。

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