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磷脂酶A2消化对人脂蛋白[a]的构象及赖氨酸/纤维蛋白原结合特性的影响

Effect of phospholipase A2 digestion on the conformation and lysine/fibrinogen binding properties of human lipoprotein[a].

作者信息

Fless G M, Kirk E W, Klezovitch O, Santiago J Y, Edelstein C, Hoover-Plow J, Scanu A M

机构信息

Department of Medicine, University of Chicago, 5841 South Maryland Avenue, Chicago, IL 60637, USA.

出版信息

J Lipid Res. 1999 Apr;40(4):583-92.

Abstract

In vitro hydrolysis of human lipoprotein[a] (Lp[a]) by phospholipase A2 (PLA2) decreased the phosphatidylcholine (PC) content by 85%, but increased nonesterified fatty acids 3.2-fold and lysoPC 12.9-fold. PLA2-treated Lp[a] had a decreased molecular weight, increased density, and greater electronegativity on agarose gels. In solution, PLA2-Lp[a] was a monomer, and when assessed by sedimentation velocity it behaved like untreated Lp[a], in that it remained compact in NaCl solutions but assumed the extended form in the presence of 6-amino hexanoic acid, which was shown previously to have an affinity for the apo[a] lysine binding site II (LBS II) comprising kringles IV5-8. We interpreted our findings to indicate that PLA2 digestion had no effect on the reactivity of this site. This conclusion was supported by the results obtained from lysine Sepharose and fibrinogen binding experiments, in the presence and absence of Tween 20, showing that phospholipolysis had no effect on the reactivity of the LBS-II domain. A comparable binding behavior was also exhibited by the free apo[a] derived from each of the two forms of Lp[a]. We did observe a small increase in affinity of PLA2-Lp[a] to lysine Sepharose and attributed it to changes in reactivity of the LBS I domain (kringle IV10) induced by phospholipolysis. In conclusion, the extensive modification of Lp[a] caused by PLA2 digestion had no significant influence on the reactivity of LBS II, which is the domain involved in the binding of apo[a] to fibrinogen and apoB-100. These results also suggest that phospholipids do not play an important role in these interactions.

摘要

磷脂酶A2(PLA2)对人脂蛋白[a](Lp[a])进行体外水解,使磷脂酰胆碱(PC)含量降低了85%,但非酯化脂肪酸增加了3.2倍,溶血磷脂酰胆碱增加了12.9倍。经PLA2处理的Lp[a]分子量降低,密度增加,在琼脂糖凝胶上的电负性增强。在溶液中,PLA2-Lp[a]是单体,通过沉降速度评估时,其行为与未处理的Lp[a]相似,即在NaCl溶液中保持紧密状态,但在6-氨基己酸存在时呈伸展形式,先前已证明6-氨基己酸对包含kringles IV5-8的载脂蛋白[a]赖氨酸结合位点II(LBS II)具有亲和力。我们对研究结果的解释是,PLA2消化对该位点的反应性没有影响。赖氨酸琼脂糖和纤维蛋白原结合实验的结果支持了这一结论,无论有无吐温20,结果均表明磷脂分解对LBS-II结构域的反应性没有影响。两种形式的Lp[a]衍生的游离载脂蛋白[a]也表现出类似的结合行为。我们确实观察到PLA2-Lp[a]与赖氨酸琼脂糖的亲和力略有增加,并将其归因于磷脂分解引起的LBS I结构域(kringle IV10)反应性的变化。总之,PLA2消化对Lp[a]的广泛修饰对LBS II的反应性没有显著影响,LBS II是载脂蛋白[a]与纤维蛋白原和载脂蛋白B-100结合的结构域。这些结果还表明,磷脂在这些相互作用中不发挥重要作用。

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