Lipid Research Group, Division of Gastroenterology, Hepatology, and Nutrition, The Children's Hospital of Philadelphia, University of Pennsylvania School of Medicine, Philadelphia, PA 19104-4318, USA.
J Lipid Res. 2010 Mar;51(3):606-17. doi: 10.1194/jlr.M002055. Epub 2009 Sep 28.
The partitioning of apolipoprotein A-I (apoA-I) molecules in plasma between HDL-bound and -unbound states is an integral part of HDL metabolism. We used the surface plasmon resonance (SPR) technique to monitor in real time the reversible binding of apoA-I to HDL. Biotinylated human HDL(2) and HDL(3) were immobilized on a streptavidin-coated SPR sensor chip, and apoA-I solutions at different concentrations were flowed across the surface. The wild-type (WT) human and mouse apoA-I/HDL interaction involves a two-step process; apoA-I initially binds to HDL with fast association and dissociation rates, followed by a step exhibiting slower kinetics. The isolated N-terminal helix bundle domains of human and mouse apoA-I also exhibit a two-step binding process, consistent with the second slower step involving opening of the helix bundle domain. The results of fluorescence experiments with pyrene-labeled apoA-I are consistent with the N-terminal helix bundle domain interacting with proteins resident on the HDL particle surface. Dissociation constants (K(d)) measured for WT human apoA-I interactions with HDL(2) and HDL(3) are about 10 microM, indicating that the binding is low affinity. This K(d) value does not apply to all of the apoA-I molecules on the HDL particle but only to a relatively small, labile pool.
载脂蛋白 A-I(apoA-I)分子在血浆中与 HDL 结合和未结合状态之间的分配是 HDL 代谢的一个组成部分。我们使用表面等离子体共振(SPR)技术实时监测 apoA-I 与 HDL 的可逆结合。生物素化的人 HDL(2)和 HDL(3)固定在链霉亲和素涂覆的 SPR 传感器芯片上,不同浓度的 apoA-I 溶液流经表面。野生型(WT)人类和小鼠 apoA-I/HDL 相互作用涉及两步过程;apoA-I 最初与 HDL 快速结合和解离,然后是一个动力学较慢的步骤。人apoA-I 和小鼠 apoA-I 的分离 N 端螺旋束结构域也表现出两步结合过程,与涉及螺旋束结构域打开的第二步较慢动力学一致。用芘标记的 apoA-I 进行荧光实验的结果与 N 端螺旋束结构域与 HDL 颗粒表面上的驻留蛋白相互作用一致。用 WT 人 apoA-I 与 HDL(2)和 HDL(3)相互作用测量的解离常数(K(d))约为 10 微摩尔,表明结合是低亲和力的。该 K(d)值不适用于 HDL 颗粒上的所有 apoA-I 分子,而仅适用于相对较小的、不稳定的池。