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The interaction of prostaglandins with human serum lipoproteins

机译:前列腺素与人血清脂蛋白的相互作用

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Using high density and low density lipoproteins (HDL and LDL) labeled with fluorescent analogues of phosphatidylcholine or sphingomyelin it was found that low amounts (10?12 M) of prostaglandins E1 and F2α induced different structural rearrangements of the lipoprotein surface, whereas prostaglandins E2 and F1α had no effect. The effects of prostaglandin E1 on HDL were largely paralled by those of this prostaglandin on synthetic recombinants prepared from pure apolipoprotein A1, phospholipids and cholesterol and were demonstrated to be caused by prostaglandin-apolipoprotein interaction. The interaction resembled that of a ligand with a specific receptor protein because it was specific, reversible, concentration and temperature dependent and saturable. However the retaining capacity of HDL or LDL for prostaglandin E1 as determined by equilibrium dialysis was very low and a single prostaglandin E1 molecule was able to induce structural changes in large numbers of discrete lipoprotein particles. To explain this remarkable fact a non-equilibrium model of ligand-receptor interaction is proposed. According to that model in open systems characterized by weak ligand-receptor binding, high diffusion rate of the ligand and long relaxation times which exceed the interval between two successive receptor occupations, the ligand-induced changes will accumulate, resulting in transformation of the system into a new state which may be far away from equilibrium. It is emphasized that the low mobility of lipids constituting the environment of the receptor protein plays a critcal role in this type of signal amplification.It was further demonstrated that the PGE1-induced changes of the lipoprotein surface resulted in an enhancement of LDL-to-HDL transfer of cholesterol esters and phosphatidylcholine especially in the presence of serum lipid transfer proteins. The acceleration of the interlipoprotein transfer caused by prostaglandin E1 in turn increases the rate of cholesterol esterification in serum. It is suggested that in such a way prostaglandin E1 may influence the homeostasis of cholesterol.
机译:使用标记有磷脂酰胆碱或鞘磷脂荧光类似物的高密度和低密度脂蛋白(HDL和LDL),发现少量(10?12 M)前列腺素E1和F2α引起脂蛋白表面的不同结构重排,而前列腺素E2和F1α没有作用。前列腺素E1对HDL的作用在很大程度上与该前列腺素对由纯载脂蛋白A1,磷脂和胆固醇制备的合成重组体的影响相平行,并被证明是由前列腺素-载脂蛋白相互作用引起的。相互作用类似于配体与特定受体蛋白的相互作用,因为它具有特异性,可逆性,浓度和温度依赖性且可饱和。然而,通过平衡透析确定的HDL或LDL对前列腺素E1的保留能力非常低,并且单个前列腺素E1分子能够诱导大量离散脂蛋白颗粒的结构变化。为了解释这一显着事实,提出了配体-受体相互作用的非平衡模型。根据该模型在开放系统中的特征是配体与受体的结合较弱,配体的扩散速率高,弛豫时间长(超过两次连续的受体占领之间的间隔),配体诱导的变化会累积,导致系统转化为一个可能远离平衡状态的新状态。需要强调的是,构成受体蛋白环境的脂质的低迁移率在这种信号放大中起关键作用。进一步证明了PGE1诱导的脂蛋白表面变化导致LDL-to-LDL增强。胆固醇酯和磷脂酰胆碱的HDL转移,特别是在存在血清脂质转移蛋白的情况下。由前列腺素E1引起的脂蛋白间转移的加速反过来又增加了血清中胆固醇酯化的速率。建议以这种方式前列腺素E1可影响胆固醇的体内平衡。

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