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一种新型重组溶栓和抗血栓形成剂——葡萄球菌激酶变体的克隆与表达。

Cloning and expression of a new recombinant thrombolytic and anthithrombotic agent - a staphylokinase variant.

作者信息

Kowalski Michał, Brown George, Bieniasz Magdalena, Oszajca Katarzyna, Chabielska Ewa, Pietras Tadeusz, Szemraj Zofia, Makandjou-Ola Eusebio, Bartkowiak Jacek, Szemraj Janusz

机构信息

Department of Medical Biochemistry, Medical University of Lodz, Łódź, Poland.

出版信息

Acta Biochim Pol. 2009;56(1):41-53. Epub 2008 Nov 19.

Abstract

To develop a more potent antithrombin agent with thrombolytic and antiplatelet properties, a new staphylokinase (SAK) variant was constructed. The kringle 2 domain (K2) of tissue type-plasminogen activator (t-PA) containing a fibrin-specific binding site (i), the RGD sequence (Arg-Gly-Asp) for the prevention of platelet aggregation (ii) and the antithrombotic agent - hirulog (iii) was assembled to the C-terminal part of recombinant staphylokinase (r-SAK). cDNA for the hybrid protein SAK-RGD-K2-Hirul was cloned into Pichia pastoris pPIC9K yeast expression vector. The introduction of K2 t-PA, the RGD sequence and hirulog into the C-terminus of r-SAK did not alter the staphylokinase activity. We observed a higher clot lysis potency of SAK-RGD-K2-Hirul as evidenced by a faster and more profound lysis of (125)I-labeled human fibrin clots. The potency of thrombin inhibition by the hirulog C-terminal part of the recombinant fusion protein was almost identical to that of r-Hir alone. These results suggest that the SAK-RGD-K2-Hirul construct can be a more potent and faster-acting thrombolytic agent with better antithrombin and antiplatelet properties compared to r-SAK and SAK-RGD-K2-Hir.

摘要

为了开发一种具有溶栓和抗血小板特性的更有效的抗凝血酶药物,构建了一种新的葡萄球菌激酶(SAK)变体。将含有纤维蛋白特异性结合位点(i)的组织型纤溶酶原激活剂(t-PA)的kringle 2结构域(K2)、用于预防血小板聚集的RGD序列(精氨酸-甘氨酸-天冬氨酸)(ii)以及抗血栓药物水蛭素(iii)组装到重组葡萄球菌激酶(r-SAK)的C末端。将杂交蛋白SAK-RGD-K2-Hirul的cDNA克隆到毕赤酵母pPIC9K酵母表达载体中。将K2 t-PA、RGD序列和水蛭素引入r-SAK的C末端并没有改变葡萄球菌激酶的活性。我们观察到SAK-RGD-K2-Hirul具有更高的凝块溶解能力,这通过对(125)I标记的人纤维蛋白凝块更快、更彻底的溶解得到证明。重组融合蛋白的水蛭素C末端部分对凝血酶的抑制能力与单独的r-Hir几乎相同。这些结果表明,与r-SAK和SAK-RGD-K2-Hir相比,SAK-RGD-K2-Hirul构建体可以成为一种更有效、作用更快的溶栓剂,具有更好的抗凝血酶和抗血小板特性。

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