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低分子量鱼精蛋白:一种潜在的无毒肝素拮抗剂。

Low molecular weight protamine: a potential nontoxic heparin antagonist.

作者信息

Byun Y, Singh V K, Yang V C

机构信息

Department of Pharmaceutics, College of Pharmacy, The University of Michigan, Ann Arbor 48105-1069, USA.

出版信息

Thromb Res. 1999 Apr 1;94(1):53-61. doi: 10.1016/s0049-3848(98)00201-1.

Abstract

Protamine sulfate is the universal clinical antagonist to heparin and is used routinely after cardiovascular surgery to neutralize the anticoagulant function of heparin. Its clinical use, however, is associated with adverse effects including idiosyncratic fatal reactions. An examination of the mechanism of heparin neutralization and protamine toxicity suggests that the reversal of heparin anticoagulation may only require a small arginine-rich fragment of protamine to electrostatically dissociate antithrombin III from its binding to a specific pentasaccharide sequence in heparin. A review of literature indicates that chain-shortened peptide fragments derived from their parent proteins are normally accompanied with significantly reduced antigenicity and immunogenicity, which are two primary contributing factors to protamine-induced life-threatening toxic effects via an immunoglobulin-mediated pathway. Based on these observations, we propose our general hypothesis: if a chain-shortened low molecular weight protamine fragment containing the heparin-neutralizing domain could be derived directly from a native protamine, it could be a potent and nontoxic heparin antagonist. In this article, we present our experimental results to support the above hypothesis. LMWP fragments containing an intact arginine sequence and an average molecular weight of approximately 1.1 kDa were prepared successfully by enzymatic digestion of native protamine with thermolysin. In vitro studies demonstrated that such LMWP fragments completely neutralized the anticoagulant functions of heparin, based on the anti-Xa chromogenic assay and aPTT clotting time assay. Our in vivo results indicated that while administration of protamine to mice led to obvious production of antiprotamine antibodies, injection of LMWP did not elicit any detectable immunogenic responses. In addition, the LMWP fragments showed a significantly reduced antigenicity or, in other words, cross-reactivity towards the mice antiprotamine antibodies produced by the administration of protamine.

摘要

硫酸鱼精蛋白是肝素通用的临床拮抗剂,常用于心血管手术后中和肝素的抗凝作用。然而,其临床应用会引发不良反应,包括特异质性致命反应。对肝素中和机制及鱼精蛋白毒性的研究表明,逆转肝素抗凝作用可能仅需一小段富含精氨酸的鱼精蛋白片段,通过静电作用使抗凝血酶III与其在肝素中特定五糖序列的结合解离。文献综述表明,源自其亲本蛋白的链缩短肽片段通常伴随着显著降低的抗原性和免疫原性,这是通过免疫球蛋白介导途径导致鱼精蛋白引发危及生命毒性作用的两个主要因素。基于这些观察结果,我们提出一个总体假设:如果能直接从天然鱼精蛋白中获得包含肝素中和结构域的链缩短低分子量鱼精蛋白片段,它可能是一种强效且无毒的肝素拮抗剂。在本文中,我们展示了支持上述假设的实验结果。通过用嗜热菌蛋白酶对天然鱼精蛋白进行酶切,成功制备了含有完整精氨酸序列且平均分子量约为1.1 kDa的低分子量鱼精蛋白(LMWP)片段。体外研究表明,基于抗Xa显色测定法和活化部分凝血活酶时间(aPTT)凝血时间测定法,此类LMWP片段能完全中和肝素的抗凝功能。我们的体内实验结果表明,给小鼠注射鱼精蛋白会导致明显产生抗鱼精蛋白抗体,而注射LMWP则未引发任何可检测到的免疫反应。此外,LMWP片段显示出显著降低的抗原性,或者换句话说,对因注射鱼精蛋白而产生的小鼠抗鱼精蛋白抗体的交叉反应性降低。

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