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首页> 外文期刊>Biotechnology Progress >Expression of Cholera Toxin B Subunit-Lumbrokinase in Edible Sunflower Seeds-The Use of Transmucosal Carrier to Enhance its Fusion Protein's Effect on Protection of Rats and Mice Against Thrombosis
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Expression of Cholera Toxin B Subunit-Lumbrokinase in Edible Sunflower Seeds-The Use of Transmucosal Carrier to Enhance its Fusion Protein's Effect on Protection of Rats and Mice Against Thrombosis

机译:食用向日葵种子中霍乱毒素B亚基-肺激酶的表达-使用透粘膜载体增强其融合蛋白对大鼠和小鼠血栓形成的保护作用

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Lumbrokinase (LK) is a group of serine proteases with strong fibrinolytic and thrombolytic activities and is useful for treating diseases caused by thrombus. Cholera toxin B subunit (CTB) has been widely used to facilitate antigen delivery by serving as an effective mucosal carrier molecule for the induction of oral tolerance. We investigate here the application of CTB as a transmucosal carrier in enhancing its fusion protein-LKs effect to protect rats against thrombosis. Thus, in this study, CTB-LK fusion gene separated by a furin cleavage site was expressed in seeds of Helianthus annuus L. The activity of recombinant protein in seeds of transgenic sunflower was confirmed by Western blot analysis, fibrin plate assays and G_(M1)-ganglioside ELISA. The thrombosis model of rats and mice revealed that the oral administration of peeled seeds of sunflower expressing CTB-LK had a more significant antithrombotic effect on animals compared with that administration of peeled seeds of sunflower expressing LK. It is possible to conclude that CTB can successfully enhance its fusion protein to be absorbed in rats or mice thrombosis model. The use of CTB as a transmucosal carrier in the delivery of transgenic plant-derived oral therapeutic proteins was supported. In addition, for the purpose of that recombinant CTB-LK was designed for oral administration, thus the expression of CTB-LK in edible sunflower seeds eliminated the need for downstream processing of proteins.
机译:Lumbrokinase(LK)是一组具有强大的纤维蛋白溶解和血栓溶解活性的丝氨酸蛋白酶,可用于治疗血栓引起的疾病。霍乱毒素B亚基(CTB)已被广泛用作通过诱导口腔耐受的有效粘膜载体分子来促进抗原递送。我们在这里调查CTB作为透粘膜载体在增强其融合蛋白LKs效果以保护大鼠免受血栓形成中的应用。因此,在这项研究中,由弗林蛋白酶切割位点分离的CTB-LK融合基因在向日葵种子中表达。通过Western印迹分析,纤维蛋白平板测定和G_(M1)证实了转基因向日葵种子中重组蛋白的活性。神经节苷脂ELISA。大鼠和小鼠的血栓形成模型表明,与给予LK向日葵去皮种子相比,口服给予CTB-LK向日葵去皮种子对动物具有更显着的抗血栓作用。可以得出结论,CTB可以成功增强其融合蛋白,使其在大鼠或小鼠血栓形成模型中被吸收。支持使用CTB作为转基因粘膜载体传递转基因植物来源的口服治疗性蛋白质。另外,出于该重组CTB-LK被设计用于口服施用的目的,因此CTB-LK在食用向日葵种子中的表达消除了对蛋白质下游加工的需要。

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