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具有相同连接的多重结合:一种解释脂蛋白(a)对纤维蛋白溶解作用的机制。

Multiple binding with identical linkage: a mechanism that explains the effect of lipoprotein(a) on fibrinolysis.

作者信息

Hervio L, Durlach V, Girard-Globa A, Anglés-Cano E

机构信息

Institut National de la Santé et de la Recherche Médicale, INSERM U.143, Centre Hospitalier Universitaire de Bicêtre, Paris, France.

出版信息

Biochemistry. 1995 Oct 17;34(41):13353-8. doi: 10.1021/bi00041a011.

Abstract

We have previously shown that both recombinant apo(a) and native Lp(a) inhibit the binding of Glu-plasminogen to fibrin surfaces [Fleury & Anglés-Cano (1991) Biochemistry 30, 7630-7638; Rouy et al. (1992) Biochemistry 31, 6332-6339]. The aim of the present study was to characterize the mechanism of this inhibition and to define the parameters governing binding when two different Lp(a) species compete with plasminogen for fibrin, a situation that may be found in vivo in subjects heterozygous for the apo(a) trait. The Kd for the binding of plasminogen to fibrin was 660 nM whereas the affinity of Lp(a) was inversely related to apo(a) size (Kd range: 50 to > 500 nM). To determine the effect of plasminogen on Lp(a) binding and reciprocally, competition experiments were performed. The Kd of either Lp(a) or plasminogen for fibrin remained unchanged in the presence of the other competitor whereas Bmax, the maximal amount bound, was importantly decreased. In a similar fashion, competition for fibrin binding among Lp(a) isoforms was shown with the use of Lp(a) density fractions containing varying proportions of isoforms B (approximately 460 kDa) and S3 (approximately 640 kDa); variations in Kd values (from 141 nM to 460 nM) as a function of the relative content in isoform S3 were observed. Altogether, these results are indicative of multiple binding by ligands that bind with different affinities to equivalent but independent sites. Thus, in plasma from heterozygous subjects, the influence of each Lp(a) isoform on fibrinolysis will depend on their affinity for fibrin and on their concentration relative to each other and to plasminogen.

摘要

我们之前已经表明,重组载脂蛋白(a)和天然脂蛋白(a)[Lp(a)]均能抑制谷氨酸纤溶酶原与纤维蛋白表面的结合[弗勒里和安格莱斯 - 卡诺(1991年)《生物化学》30卷,7630 - 7638页;鲁伊等人(1992年)《生物化学》31卷,6332 - 6339页]。本研究的目的是阐明这种抑制作用的机制,并确定当两种不同的Lp(a)异构体与纤溶酶原竞争纤维蛋白时的结合参数,这种情况可能在载脂蛋白(a)性状杂合子的受试者体内出现。纤溶酶原与纤维蛋白结合的解离常数(Kd)为660 nM,而Lp(a)的亲和力与载脂蛋白(a)大小呈负相关(Kd范围:50至>500 nM)。为了确定纤溶酶原对Lp(a)结合的影响以及反之亦然,进行了竞争实验。在存在另一种竞争者的情况下,Lp(a)或纤溶酶原与纤维蛋白的Kd保持不变,而最大结合量(Bmax)则显著降低。以类似的方式,利用含有不同比例异构体B(约460 kDa)和S3(约640 kDa)的Lp(a)密度级分,显示了Lp(a)异构体之间对纤维蛋白结合的竞争;观察到Kd值(从141 nM到460 nM)随异构体S3相对含量的变化而变化。总之,这些结果表明配体以不同亲和力结合到等同但独立的位点上存在多重结合。因此,在杂合子受试者的血浆中,每种Lp(a)异构体对纤维蛋白溶解的影响将取决于它们对纤维蛋白的亲和力以及它们相对于彼此和纤溶酶原的浓度。

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