Buniya Harith K, Murugan Vadivel, Thangadurai Chinnathambi
Department of Biology, College of Education for Pure Science, University of Anbar, Ramadi, Iraq.
Genetic Engineering Unit, Center for Biotechnology, Anna University, Guindy, Chennai- 600 025, India.
J Microbiol Methods. 2014 Mar;98:84-8. doi: 10.1016/j.mimet.2014.01.006. Epub 2014 Jan 17.
Streptokinase (SK) is a thrombolytic agent that is widely used to treat myocardial infarction and pulmonary embolism. The lack of fibrin specificity of SK for the clot lysis is one of the limitations of SK. In this study, we have incorporated the finger and Kringle 2 domains from the human tissue type plasminogen activator gene (t-PA) at the 5' end of the SK gene. These domains are responsible for specific binding to fibrin. We have used the pRSETB vector in an attempt to express the hybrid streptokinase possessing specificity for fibrin. On this regard, three hybrid streptokinase were constructed and expressed in Escherichia coli BL21 (DE3): the finger domain with SK (FSK), the Kringle 2 domain with SK (KSK) and the finger domain+Kringle 2 with SK (FKSK). The activities of the hybrid SKs were assessed by caseinolytic assay and clot lysis assay. All hybrid SKs were found to activate plasminogen in the caseinolytic plate assay. In the clot lysis assay, KSK and FSK were able to dissolute human blood and artificial clots in a fibrin-dependent manner unlike the SK and FKSK proteins.
链激酶(SK)是一种广泛用于治疗心肌梗死和肺栓塞的溶栓剂。SK对凝块溶解缺乏纤维蛋白特异性是其局限性之一。在本研究中,我们将人组织型纤溶酶原激活剂基因(t-PA)的指状结构域和kringle 2结构域整合到SK基因的5'端。这些结构域负责与纤维蛋白特异性结合。我们使用pRSETB载体试图表达对纤维蛋白具有特异性的杂交链激酶。在这方面,构建了三种杂交链激酶并在大肠杆菌BL21(DE3)中表达:含SK的指状结构域(FSK)、含SK的kringle 2结构域(KSK)和含SK的指状结构域+kringle 2(FKSK)。通过酪蛋白溶解试验和凝块溶解试验评估杂交SK的活性。在酪蛋白溶解平板试验中,发现所有杂交SK均能激活纤溶酶原。在凝块溶解试验中,与SK和FKSK蛋白不同,KSK和FSK能够以纤维蛋白依赖性方式溶解人血和人工凝块。