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血浆源性脂质转运蛋白与脂蛋白底物的结合。结合在脂质转运过程中的作用。

Binding of plasma-derived lipid transfer protein to lipoprotein substrates. The role of binding in the lipid transfer process.

作者信息

Morton R E

出版信息

J Biol Chem. 1985 Oct 15;260(23):12593-9.

PMID:4044601
Abstract

Plasma-derived lipid transfer protein (LTP) facilitates the transfer of cholesteryl ester and triglyceride between all lipoproteins. Kinetic models of the transfer event have suggested that transfer is facilitated through the physical interaction (binding) of LTP with its lipoprotein substrate. Such binding has been observed previously between LTP and high density lipoprotein (HDL), but not between LTP and low (LDL) or very low (VLDL) density lipoproteins. In the present study, the interaction of LTP with plasma lipoproteins has been re-evaluated. These experiments have employed Sepharose-bound lipoproteins in order to facilitate the rapid separation of unbound and lipoprotein-associated LTP. The validity of this approach in assessing LTP-lipoprotein interactions was evidenced by the fact that free (unbound) lipoproteins could competitively inhibit or disrupt the binding of LTP to the Sepharose-bound lipoproteins. LTP was observed to bind to VLDL, LDL, and HDL. Whereas VLDL- and LDL-LTP complexes were labile and almost completely dissociated in 90 min, HDL-LTP complexes remained intact during this time. Under equilibrium conditions, LTP binding to all lipoproteins was characterized by high affinity, saturable kinetics; the apparent affinities (Kd) of VLDL, LDL, and HDL for LTP were nearly the same (congruent to 25 nM). The results of two studies correlated lipid transfer activity with LTP binding to lipoproteins: 1) LTP binding and transfer activity increased in parallel as the amount of LTP in the assay was increased and 2) the inhibition of transfer activity caused by differing amounts of an inhibitory protein correlated with similar decrements in LTP binding. The latter data also suggest that the inhibitor protein suppresses lipid transfer activity by disrupting LTP-lipoprotein interactions. It is concluded that LTP avidly binds to VLDL, LDL, and HDL via a reversible, saturable mechanism and that the binding of LTP to the lipoprotein surface is an integral component of the lipid transfer reaction.

摘要

血浆源性脂质转运蛋白(LTP)促进胆固醇酯和甘油三酯在所有脂蛋白之间的转运。该转运事件的动力学模型表明,转运是通过LTP与其脂蛋白底物的物理相互作用(结合)来促进的。此前已观察到LTP与高密度脂蛋白(HDL)之间存在这种结合,但未观察到LTP与低密度脂蛋白(LDL)或极低密度脂蛋白(VLDL)之间存在这种结合。在本研究中,对LTP与血浆脂蛋白的相互作用进行了重新评估。这些实验采用了琼脂糖偶联的脂蛋白,以便于快速分离未结合的和与脂蛋白相关的LTP。游离(未结合)脂蛋白能够竞争性抑制或破坏LTP与琼脂糖偶联脂蛋白的结合,这一事实证明了该方法在评估LTP-脂蛋白相互作用方面的有效性。观察到LTP与VLDL、LDL和HDL结合。虽然VLDL-LTP和LDL-LTP复合物不稳定,在90分钟内几乎完全解离,但在此期间HDL-LTP复合物保持完整。在平衡条件下,LTP与所有脂蛋白的结合具有高亲和力、可饱和动力学的特征;VLDL、LDL和HDL对LTP的表观亲和力(Kd)几乎相同(约为25 nM)。两项研究的结果将脂质转运活性与LTP与脂蛋白的结合相关联:1)随着测定中LTP量的增加,LTP结合和转运活性平行增加;2)不同量的抑制蛋白引起的转运活性抑制与LTP结合的类似减少相关。后一组数据还表明,抑制蛋白通过破坏LTP-脂蛋白相互作用来抑制脂质转运活性。结论是,LTP通过可逆、可饱和的机制 avidly 结合到VLDL、LDL和HDL上,并且LTP与脂蛋白表面的结合是脂质转运反应的一个组成部分。

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