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肝素及其衍生物与HIV-1重组包膜糖蛋白结合,而非与重组HIV-1受体CD4结合。

Heparin and its derivatives bind to HIV-1 recombinant envelope glycoproteins, rather than to recombinant HIV-1 receptor, CD4.

作者信息

Harrop H A, Rider C C

机构信息

Division of Biochemistry, Royal Holloway University of London, Surrey, UK.

出版信息

Glycobiology. 1998 Feb;8(2):131-7. doi: 10.1093/glycob/8.2.131.

Abstract

We have employed a direct radiolabel binding assay to investigate the interaction between3H-heparin and recombinant envelope glycoproteins, rgp120s, derived from several different isolates of HIV-1. Comparable dose-dependent binding is exhibited by rgp120s from isolates IIIB, GB8, MN and SF-2. Under identical experimental conditions the binding of3H-heparin to a recombinant soluble form of the cellular receptor for gp120, CD4, is negligible. The binding of3H-heparin to rgp120 is competed for by excess unlabeled heparin and certain other, but not all, glycosaminoglycan and chemically modified heparins. Of a range of such polysaccharides tested, ability to compete with3H-heparin for binding was strictly correlated with inhibition of HIV-1 replication in vitro. Those possessing potent anti-HIV-1 activity were effective competitors, whereas those having no or little anti-HIV-1 activity were poor competitors. Scatchard analysis indicates that the K d of the interaction between heparin and rgp120 is 10 nM. Binding studies conducted in increasing salt concentrations confirm that the interaction is ionic in nature. Synthetic 33-35 amino acid peptides based on the sequence of the V3 loop of gp120 also bind to heparin with high affinity. V3 loop peptides that are cyclized due to terminal cysteine residues show more selective binding than their uncyclized counterparts. Overall, these data demonstrate further that heparin exerts its anti-HIV-1 activity by binding to the envelope glycoprotein of HIV-1, rather than its cellular receptor, CD4. This study confirms that the V3 loop of gp120 is the site at which heparin exerts its anti-HIV-1 activity. Moreover, it reveals that high affinity binding to heparin is shared by all four rgp120s examined, despite amino acid substitutions within the V3 loop.

摘要

我们采用了直接放射性标记结合试验来研究³H-肝素与源自几种不同HIV-1分离株的重组包膜糖蛋白rgp120之间的相互作用。来自IIIB、GB8、MN和SF-2分离株的rgp120表现出类似的剂量依赖性结合。在相同的实验条件下,³H-肝素与gp120的细胞受体重组可溶性形式CD4的结合可忽略不计。³H-肝素与rgp120的结合可被过量的未标记肝素以及某些(但不是全部)糖胺聚糖和化学修饰的肝素竞争。在所测试的一系列此类多糖中,与³H-肝素竞争结合的能力与体外抑制HIV-1复制严格相关。具有强效抗HIV-1活性的多糖是有效的竞争者,而那些没有或几乎没有抗HIV-1活性的多糖则是较差的竞争者。Scatchard分析表明,肝素与rgp120之间相互作用的解离常数(Kd)为10 nM。在不断增加盐浓度的情况下进行的结合研究证实,这种相互作用本质上是离子性的。基于gp120 V3环序列的合成33 - 35个氨基酸的肽也能与肝素高亲和力结合。由于末端半胱氨酸残基而环化的V3环肽比未环化的对应肽表现出更具选择性的结合。总体而言,这些数据进一步证明肝素通过与HIV-1的包膜糖蛋白而非其细胞受体CD4结合来发挥其抗HIV-1活性。这项研究证实gp120的V3环是肝素发挥其抗HIV-1活性的位点。此外,它还揭示尽管V3环内存在氨基酸替换,但所检测的所有四种rgp120都与肝素具有高亲和力结合。

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